131 results on '"Wang Kui"'
Search Results
2. Effects of salt stress on interspecific competition between an invasive alien plant Oenothera biennis and three native species
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Guo, Xiao, Ma, Jin-Ye, Liu, Le-Le, Li, Ming-Yan, Wang, Hui, Sun, Ying-Kun, Wang, Tong, Wang, Kui-Ling, and Meyerson, Laura A.
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Plant Science - Abstract
Biological invasions and soil salinization have become increasingly severe environmental problems under global change due to sea-level rise and poor soil management. Invasive species can often outcompete native species, but few studies focus on whether invasive alien species are always superior competitors under increasing stressors. We grew an invasive grass species, Oenothera biennis L., and three native grass species (Artemisia argyi Lévl. et Vant., Chenopodium album L., and Inula japonica Thunb.) as a monoculture (two seedlings of each species) or mixture (one seedling of O. biennis and one native species seedling) under three levels of salt treatments (0, 1, and 2 g/kg NaCl) in a greenhouse. We found that invasive O. biennis exhibited greater performance over native C. album and I. japonica, but lower performance compared to A. argyi, regardless of the soil salinity. However, salinity did not significantly affect the relative dominance of O. biennis. Interspecific competition enhanced the growth of O. biennis and inhibited the growth of I. japonica. Although O. biennis seedlings always had growth dominance over C. album seedlings, C. album was not affected by O. biennis at any salt level. At high salt levels, O. biennis inhibited the growth of A. argyi, while A. argyi did not affect the growth of O. biennis. Salt alleviated the competitive effect of O. biennis on I. japonica but did not mitigate the competition between O. biennis and the other two native species. Therefore, our study provides evidence for a better understanding of the invasive mechanisms of alien species under various salinity conditions.
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- 2023
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3. Periplocin suppresses the growth of colorectal cancer cells by triggering LGALS3 (galectin 3)-mediated lysophagy
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Wang, Kui, Fu, Shuyue, Dong, Lixia, Zhang, Dingyue, Wang, Mao, Wu, Xingyun, Shen, Enhao, Luo, Li, Li, Changlong, Nice, Edouard Collins, Huang, Canhua, and Zou, Bingwen
- Abstract
Colorectal cancer (CRC) is one of the most common malignancies worldwide and remains a major clinical challenge. Periplocin, a major bioactive component of the traditional Chinese herb Cortex periplocae, has recently been reported to be a potential anticancer drug. However, the mechanism of action is poorly understood. Here, we show that periplocin exhibits promising anticancer activity against CRC both in vitro and in vivo. Mechanistically, periplocin promotes lysosomal damage and induces apoptosis in CRC cells. Notably, periplocin upregulates LGALS3 (galectin 3) by binding and preventing LGALS3 from Lys210 ubiquitination-mediated proteasomal degradation, leading to the induction of excessive lysophagy and resultant exacerbation of lysosomal damage. Inhibition of LGALS3-mediated lysophagy attenuates periplocin-induced lysosomal damage and growth inhibition in CRC cells, suggesting a critical role of lysophagy in the anticancer effects of periplocin. Taken together, our results reveal a novel link between periplocin and the lysophagy machinery, and indicate periplocin as a potential therapeutic option for the treatment of CRC. Abbreviations: 3-MA: 3-methyladenine; ACACA/ACC1: acetyl-CoA carboxylase alpha; AMPK: adenosine monophosphate-activated protein kinase; AO: Acridine orange; ATG5: autophagy related 5; ATG7: autophagy related 7; CALM: calmodulin; CHX: cycloheximide; CRC: colorectal cancer; CQ: chloroquine; CTSB: cathepsin B; CTSD: cathepsin D; ESCRT: endosomal sorting complex required for transport; LAMP1: lysosomal associated membrane protein 1; LMP: lysosomal membrane permeabilization; MAP1LC3B/LC3B: microtubule associated protein 1 light chain 3 beta; MCOLN1/TRPML1: mucolipin TRP cation channel 1; MKI67/Ki-67: marker of proliferation Ki-67; MTOR: mechanistic target of rapamycin kinase; P2RX4/P2X4: purinergic receptor P2X 4; PARP1/PARP: poly(ADP-ribose) polymerase 1; PRKAA/AMPKα: protein kinase AMP-activated catalytic subunit alpha; SQSTM1/p62: sequestosome 1; TFEB: transcription factor EB; TRIM16: tripartite motif containing 16.
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- 2023
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4. A flexible Ti3C2Tx (MXene)/paper membrane for efficient oil/water separation
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Saththasivam, Jayaprakash, Wang, Kui, Yiming, Wubulikasimu, Liu, Zhaoyang, and Mahmoud, Khaled A.
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Engineering ,Chemical engineering ,FOS: Chemical engineering - Abstract
The scalable fabrication of flexible membranes for efficient oil/water separation is in high demand but still significantly underdeveloped. Here, we present a flexible membrane using Ti3C2Tx (MXene) as the functional layer on conventional print paper as the substrate. With a simple coating process using MXene ink, we developed a highly hydrophilic and oleophobic membrane with an underwater oil contact angle of 137°. Such a simple membrane shows outstanding flexibility and robustness, and demonstrates a facile approach for membrane scale-up using MXene ink on low-cost print paper. The membrane shows high separation efficiency for oil/water emulsions, of over 99%, and a high water permeation flux of over 450 L per m2 per h per bar. We demonstrate the excellent anti-fouling property of this membrane by cleaning the membranes without chemicals. These low-cost, highly efficient, anti-fouling membranes can provide new opportunities for industrial oil/water separation applications. Other information Published in: RSC Advances License: https://creativecommons.org/licenses/by-nc/3.0 See article on publisher's website: http://dx.doi.org/10.1039/c9ra02129a
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- 2023
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5. Additional file 1 of Antiviral therapy inhibited HBV-reactivation and improved long-term outcomes in patients who underwent radiofrequency ablation for HBV-related hepatocellular carcinoma
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Liu, Jian, Shen, Hao, Huang, Shengyu, Lin, Jianbo, Yan, Zhenlin, Qian, Guojun, Lu, Zhenghua, Wan, Xuying, Zhang, Fabiao, Wang, Kui, Zhang, Yongjie, and Li, Jun
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Additional file 1: Supplementary Table 1. AVT medication with nucleos(t)ide analogues. Supplementary Table 2. Baseline characteristics of AVT and Non-AVT. Supplementary Table 3. Analysis of independent risk factors for AVT. Supplementary Table 4. Analysis of independent risk factors for local recurrence. Supplementary Table 5. Analysis of independent risk factors for distant recurrence.
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- 2023
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6. Comparison Results for Poisson Equation with Mixed Boundary Condition on Manifolds
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Cheng, Haiqing, Ma, Tengfei, and Wang, Kui
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Mathematics - Differential Geometry ,Mathematics - Analysis of PDEs ,Mathematics (miscellaneous) ,Differential Geometry (math.DG) ,Applied Mathematics ,FOS: Mathematics ,Mathematics::Differential Geometry ,Analysis of PDEs (math.AP) - Abstract
In this article, we establish a $L^1$ estimate for solutions to Poisson equation with mixed boundary condition, on complete noncompact manifolds with nonnegative Ricci curvature and compact manifolds with positive Ricci curvature respectively. On Riemann surfaces we obtain a Talenti-type comparison. Our results generalize main theorems in [2] to Riemannian setting, and Chen-Li's result [8] to the case of variable Robin parameter., Comment: All comments are welcome! In this version, we corrected some typos
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- 2022
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7. Holocene environmental evolution history based on sporopollenin and micropaleontological reconstruction of KY-01 in the Yellow River Delta
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Xu Yan, Xia Jiang-bao, Yu Xue-Feng, Xu Shu-Jian, Zhang Hong-Jun, Zhang Tai-Ping, and Wang Kui-Feng
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Environmental evolution ,Atmospheric Science ,Global and Planetary Change ,geography ,River delta ,geography.geographical_feature_category ,Management, Monitoring, Policy and Law ,ostracoda and foraminifera ,Environmental technology. Sanitary engineering ,Environmental sciences ,Paleontology ,sporopollenin ,Sporopollenin ,holocene ,GE1-350 ,yellow river delta ,TD1-1066 ,Holocene ,Geology ,Water Science and Technology - Abstract
The Yellow River Delta adjacent to the Bohai Sea is located in the monsoon region of northern China, which is sensitive to global climate change. The core data of KY-01 borehole in the Yellow River Delta and the published records were used to reconstruct the climate environment. Based on the analysis of carbonate content, magnetic susceptibility, Ostracoda, foraminifera, sporopollenin and AMS 14C dating on the KY-01 borehole sediment core, the evolution of both the climate and sedimentary environment has been discussed. The results show that: 7656–4145 cal.aBP, seawater moved toward the land surface and the climate was generally warm and humid, when there were small-scale extreme climate fluctuations; 4145–2544 cal.aBP, transgression and recession occurred, the climate changed from warm-wet to dry-cold and there were small-scale extreme climatic events; and 2544 cal.aBP–1855 AD, the sea level was relatively low, transgression and retreat alternately occurred, the climate was drier and colder than the previous stage and the warming and cooling alternated. During the middle Holocene, cold-dry events occurred between 5737–5422 and 4451–4081 cal.aBP, which is consistent with both Chinese and worldwide climate records. HIGHLIGHTS Reconstruction of Holocene environment in the Yellow River Delta using multi-proxy indices.; Two extreme climate events in the study area since Holocene were analyzed.; Compared with the Holocene climate and environmental changes in Shandong Province.
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- 2021
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8. Flame-Retardant Performance of Epoxy Resin Composites with SiO2 Nanoparticles and Phenethyl-Bridged DOPO Derivative
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Wang Kui, Huang Weijiang, Chong Wang, Hang Liu, Qiuping Fu, Wei Yan, and Tian Qin
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Thermogravimetric analysis ,Nanocomposite ,Materials science ,General Chemical Engineering ,General Chemistry ,Epoxy ,Nanomaterials ,Limiting oxygen index ,Chemistry ,Chemical engineering ,visual_art ,visual_art.visual_art_medium ,Thermal stability ,Char ,QD1-999 ,Fire retardant - Abstract
Flame retardancy of epoxy resin (EP) plays a vital role in its applications. When inorganic nanomaterials form inorganic/organic nanocomposites, they exhibit special flame-retardant effects. In this study, EP nanocomposites were prepared by the incorporation of SiO2 nanoparticles and phenethyl-bridged 9,10-dihydro-9-oxa-10-phosphaphenanthrene-10-oxide (DOPO) derivative (DiDOPO), and the synergistic effects of SiO2 nanoparticles and DiDOPO on the flame-retardant performance of EP were discussed. Results indicated that the introduction of only 15 wt % SiO2 and 5 wt % DiDOPO in EP leads to the increase in the limiting oxygen index from 21.8 to 30.2%, and the nanocomposites achieve the UL-94 V-0 rating. Thermogravimetric analysis revealed that char yield increases with the increase in the SiO2 content of the nanocomposites and that an increased amount of thermally stable carbonaceous char is formed. SiO2 nanoparticles can improve the thermal stability and mechanical performance of EP; hence, the nanoparticles can serve as an efficient adjuvant for the DiDOPO/EP flame-retardant system.
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- 2020
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9. Natural New Bioactive Anthraquinones from Rubiaceae
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Wang Kui-wu, Su Guang-Yao, and Chen Ming-Long
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chemistry.chemical_compound ,Rubiaceae ,chemistry ,Traditional medicine ,biology ,Organic Chemistry ,Anthraquinones ,biology.organism_classification - Abstract
Rubiaceae family belongs to the Gentianales, it contains 650 genera and 13,000 species and its worldwide distribution makes it the fourth largest angiosperms. Rubiaceae contains a large amount of anthraquinone compounds, especially in the roots. Anthraquinones are very important natural products with various bioactivities, including antibacterial, antiviral, cytotoxic and antitumor, which make it play an important role in recent research. In the previous study, many researchers have reported anthraquinones from Rubiaceae in different aspects. The present paper provides an overview of the bioactive properties of new naturally occurring anthraquinones and its structural diversity that have been isolated from the Rubiaceae family in recent years. The article covers the literature from 2007 to 2018, overall 95 new anthraquinones.
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- 2020
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10. Bioactive Flavonoids from Verbenaceae
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Zhang Ting-Ting and Wang Kui-wu
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0106 biological sciences ,biology ,Traditional medicine ,010405 organic chemistry ,Chemistry ,Verbenaceae ,fungi ,Organic Chemistry ,food and beverages ,biology.organism_classification ,01 natural sciences ,0104 chemical sciences ,heterocyclic compounds ,010606 plant biology & botany - Abstract
Flavonoids are widely distributed in the plant kingdom and possess a variety of biological activities, such as anti-oxidant, anti-inflammatory, and anti-viral activities. Due to the structural diversity and biological activity, flavonoid derivatives isolated from Verbenaceae family have received a lot of attention by the research scholars. In this paper, a total of 150 natural flavonoids isolated from Verbenaceae and their bioactivities were summarized.
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- 2020
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11. Effective and facile conversion of bamboo into platform chemicals over SnCl4 in a sulfolane/water solution
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Wang Kui, Jianchun Jiang, Linshan Wei, Fei Wang, Chao Liu, Xiaoyan Yin, and Wei Min
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Aqueous solution ,Chemistry ,020209 energy ,Lignocellulosic biomass ,02 engineering and technology ,Furfural ,Catalysis ,chemistry.chemical_compound ,Hydrolysis ,020401 chemical engineering ,0202 electrical engineering, electronic engineering, information engineering ,Levulinic acid ,Organic chemistry ,Lewis acids and bases ,Sulfolane ,0204 chemical engineering - Abstract
Thermochemical conversion of lignocellulosic biomass into value-added chemicals has attracted great interest worldwide. Herein, we report an effective and facile process to transform bamboo into 5-hydroxymethylfurfural (5-HMF), furfural (FF) and levulinic acid (LA) using metal chlorides as catalysts. The effects of the reaction parameters, such as the reaction time, temperature, initial pressure and catalyst loading on the bamboo conversion and product yields were investigated. Notably, the optimum reaction conditions were heating 200 °C for 2 h using 0.75 g of SnCl4 as catalyst in a 90.0 wt% aqueous sulfolane solution, where the conversion of bamboo was 90.0 wt% forming 41.2 mol% of 5-HMF, 20.1 mol% of FF and 24.6 mol% of LA. The synergistic effect of [Sn(OH)3(aq)]+ and cation polarization has an important role in the outstanding efficiency and specificity of our selective liquefaction system. Moreover, the water/sulfolane system displays excellent performance for maintaining the Lewis acid active sites in [Sn(OH)3(aq)]+. In the process, sulfolane regulates the hydrolysis of SnCl4 to provide an effective Lewis acid strength. This study sheds light on the remarkable potential of the process for future industrial application.
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- 2020
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12. Flame-retardant behaviors of aluminum phosphates coated sepiolite in epoxy resin
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Pu Xie, Zhengwei Yang, Wei Yan, Huang Weijiang, Tian Qin, Zhang Chunmei, Tu Chunyun, Wang Kui, Guangjin Luo, and Chunlin Yang
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inorganic chemicals ,Nanocomposite ,Materials science ,Morphology (linguistics) ,Precipitation (chemistry) ,Mechanical Engineering ,Sepiolite ,chemistry.chemical_element ,02 engineering and technology ,Epoxy ,010402 general chemistry ,021001 nanoscience & nanotechnology ,complex mixtures ,01 natural sciences ,0104 chemical sciences ,Chemical engineering ,chemistry ,Mechanics of Materials ,Aluminium ,visual_art ,visual_art.visual_art_medium ,0210 nano-technology ,Safety, Risk, Reliability and Quality ,Fire retardant - Abstract
Aluminum phosphates coated sepiolite nanocomposite was fabricated via a simple one-pot heterogeneous precipitation strategy, and the effects of aluminum phosphates on the morphology of aluminum phosphates coated sepiolite were investigated. Moreover, the effect of aluminum phosphates coated sepiolite on the flame-retardant behavior, mechanical properties, and thermal stability of epoxy resin have been discussed. The results indicated that the introduction of only 20 wt% aluminum phosphates coated sepiolite in epoxy resin increased the limited oxygen index from 21.8% to 30.1%, thus the material met the UL-94 V-0 rating. Thermogravimetric analyses revealed that char yield increased in the presence of aluminum phosphates coated sepiolite form thermally stable carbonaceous char. Aluminum phosphates–coated sepiolite could improve the mechanical performance, thermal stability of epoxy resin.
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- 2020
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13. Synergistic flame‐retardant effect of <scp>DOPO</scp> ‐based derivative and organo‐montmorillonite on glass‐fiber‐reinforced polyamide <scp>6 T</scp>
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Weijiang Huang, Wentao He, Wang Kui, Jie Yu, Lijuan Long, Wei Yan, Min He, and Shuhao Qin
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chemistry.chemical_compound ,Materials science ,Montmorillonite ,Polymers and Plastics ,Chemical engineering ,chemistry ,Glass fiber ,Polyamide ,Derivative (chemistry) ,Fire retardant - Published
- 2020
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14. Quantification of the Active Lateral Earth Pressure Changes on Retaining Walls at the Leading Edge of Steep Slopes
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Wang, Kui, Liu, Gang, Zhang, Yuwei, and Lin, Junzhi
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General Earth and Planetary Sciences - Abstract
Retaining walls may become unstable when the steep slope angle of the top of the wall (β) is greater than the internal friction angle of the earth behind the wall (φ). To examine this behaviour, an active earth pressure model test setup was designed with inclined backfill behind the wall, and corresponding finite element simulations were performed at the same dimensions. The active earth pressure variation patterns of the retaining wall under two displacement modes were studied: translation (T mode) and rotation around the bottom of the wall (RB mode). The experimental results corresponded well to the finite element simulation results. The study found that the experimental results coincided well with the results of the finite element simulation. The active earth pressure and the location of the resultant force points are both connected to the wall displacement pattern and slope angle.
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- 2022
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15. Supplemental Material, sj-pdf-2-ehp-10.1177_0163278720926714 - Development and Validation of a BMI-Based Figure Rating Scale for Chinese Adolescents
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Yu, Chao-Ran, Yu, Xin-Yang, Fan, Zhi-Tao, Wang, Kui, and Littleton, Heather L.
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111099 Nursing not elsewhere classified ,111708 Health and Community Services ,111799 Public Health and Health Services not elsewhere classified ,160807 Sociological Methodology and Research Methods ,FOS: Health sciences ,FOS: Sociology - Abstract
Supplemental Material, sj-pdf-2-ehp-10.1177_0163278720926714 for Development and Validation of a BMI-Based Figure Rating Scale for Chinese Adolescents by Chao-Ran Yu, Xin-Yang Yu, Zhi-Tao Fan, Kui Wang and Heather L. Littleton in Evaluation & the Health Professions
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- 2022
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16. Isoperimetric inequalities for Neumann eigenvalues on bounded domains in rank-1 symmetric spaces
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Meng, Yifeng and Wang, Kui
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Mathematics - Differential Geometry ,Mathematics - Spectral Theory ,Mathematics - Analysis of PDEs ,Differential Geometry (math.DG) ,FOS: Mathematics ,35P15, 58G25 ,Spectral Theory (math.SP) ,Analysis of PDEs (math.AP) - Abstract
In this paper, we prove sharp isoperimetric inequalities for lower order eigenvalues of Neumann Laplacian on bounded domains in both compact and noncompact rank-1 symmetric spaces. Our results generalize the work of Wang and Xia for bounded domains in the hyperbolic space [13], and Szeg\"o-Weinberger inequality in rank-1 symmetric spaces obtained by Aithal and Santhanam [1]., Comment: All comments are welcome!
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- 2022
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17. Supplemental Material, sj-pdf-1-ehp-10.1177_0163278720979651 - Validation of the Chinese Version of the Body Image Concern Inventory
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Wang, Kui, Yu, Xin-yang, Yu, Chao-ran, Liu, Ya-fei, Chu, Min-yi, Zhang, Rui-ting, Liang, Rui, Chen, Jue, Littleton, Heather L., Shum, David H. K., and Chan, Raymond C. K.
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111099 Nursing not elsewhere classified ,111708 Health and Community Services ,111799 Public Health and Health Services not elsewhere classified ,160807 Sociological Methodology and Research Methods ,FOS: Health sciences ,FOS: Sociology - Abstract
Supplemental Material, sj-pdf-1-ehp-10.1177_0163278720979651 for Validation of the Chinese Version of the Body Image Concern Inventory by Kui Wang, Xin-yang Yu, Chao-ran Yu, Ya-fei Liu, Min-yi Chu, Rui-ting Zhang, Rui Liang, Jue Chen, Heather L. Littleton, David H. K. Shum and Raymond C. K. Chan in Evaluation & the Health Professions
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- 2022
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18. Supplemental Material, sj-pdf-1-ehp-10.1177_0163278720926714 - Development and Validation of a BMI-Based Figure Rating Scale for Chinese Adolescents
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Yu, Chao-Ran, Yu, Xin-Yang, Fan, Zhi-Tao, Wang, Kui, and Littleton, Heather L.
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111099 Nursing not elsewhere classified ,111708 Health and Community Services ,111799 Public Health and Health Services not elsewhere classified ,160807 Sociological Methodology and Research Methods ,FOS: Health sciences ,FOS: Sociology - Abstract
Supplemental Material, sj-pdf-1-ehp-10.1177_0163278720926714 for Development and Validation of a BMI-Based Figure Rating Scale for Chinese Adolescents by Chao-Ran Yu, Xin-Yang Yu, Zhi-Tao Fan, Kui Wang and Heather L. Littleton in Evaluation & the Health Professions
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- 2022
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19. The second Robin eigenvalue in non-compact rank-1 symmetric spaces
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Li, Xiaolong, Wang, Kui, and Wu, Haotian
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Mathematics - Differential Geometry ,Mathematics - Spectral Theory ,Mathematics - Analysis of PDEs ,Differential Geometry (math.DG) ,35P15, 49R05, 58C40, 58J50 ,FOS: Mathematics ,Spectral Theory (math.SP) ,Analysis of PDEs (math.AP) - Abstract
In this paper, we prove a quantitative spectral inequality for the second Robin eigenvalue in non-compact rank-1 symmetric spaces. In particular, this shows that for bounded domains in non-compact rank-1 symmetric spaces, the geodesic ball maximises the second Robin eigenvalue among domains of the same volume, with negative Robin parameter in the regime connecting the first nontrivial Neumann and Steklov eigenvalues. This result generalises the work of Freitas and Laugesen in the Euclidean setting [FL21] as well as our previous work in the hyperbolic space [LWW20]., Comment: 16 pages. Comments are welcome. arXiv admin note: substantial text overlap with arXiv:2003.03087
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- 2022
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20. Effects of nano-titanium dioxide on calcium homeostasis in vivo and in vitro: a systematic review and meta-analysis
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Yang, Yaqian, Zhao, Yiman, Wang, Qianqian, Liu, Mi, Chang, Hongmei, Li, Li, Meng, Xiaojia, Deng, Yaxin, Ling, Chunmei, Wang, Kui, Song, Guanling, and Sui, Xin
- Abstract
With the extensive application of titanium dioxide nanoparticles (TiO2 NPs), their impacts on calcium homeostasis have aroused extensive attention from scholars. However, there are still some controversies in relevant reports. Therefore, a systematic review was performed followed by a meta-analysis to explore whether TiO2 NPs could induce the imbalance in calcium homeostasis in vivo and in vitro through Revman5.4 and Stata15.0 in this research. Fourteen studies were included through detailed database retrieval and literature screening. Results indicated that the calcium levels were significantly increased and the activity of Ca2+-ATPase was significantly decreased by TiO2 NPs in vivo and in vitro. Subgroup analysis of the studies in vivo showed that TiO2 NPs exposure caused a significant increase in calcium levels in rats, exposure to large-sized TiO2 NPs (>10 nm) and long-term (>30 days) exposure could significantly increase calcium levels, and the activity of Ca2+-ATPase showed a concentration-dependent downward trend. Subgroup analysis of the studies in vitro revealed that intracellular calcium levels increased significantly in animal cells, exposure to small-sized TiO2 NPs (≤10 nm) and high concentration (>10 μg/mL) exposure could induce a significant increase in Ca2+ concentration, and the activity of Ca2+-ATPase also showed a concentration-dependent downward trend. This research showed that the physicochemical properties of TiO2 NPs and the experimental scheme could affect calcium homeostasis
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- 2022
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21. Supplemental Material, sj-pdf-2-ehp-10.1177_0163278720926714 - Development and Validation of a BMI-Based Figure Rating Scale for Chinese Adolescents
- Author
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Yu, Chao-Ran, Yu, Xin-Yang, Fan, Zhi-Tao, Wang, Kui, and Littleton, Heather L.
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111099 Nursing not elsewhere classified ,111708 Health and Community Services ,111799 Public Health and Health Services not elsewhere classified ,160807 Sociological Methodology and Research Methods ,FOS: Health sciences ,FOS: Sociology - Abstract
Supplemental Material, sj-pdf-2-ehp-10.1177_0163278720926714 for Development and Validation of a BMI-Based Figure Rating Scale for Chinese Adolescents by Chao-Ran Yu, Xin-Yang Yu, Zhi-Tao Fan, Kui Wang and Heather L. Littleton in Evaluation & the Health Professions
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- 2022
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22. Continuous Saturated Steam Assisted Low‐temperature Pyrolysis of Corncobs and Selective Production of Furfural
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Li Jing, Xu Junming, Liu Peng, Jun Ye, Jianchun Jiang, Wang Kui, and WeiHong Tan
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chemistry.chemical_compound ,Chemical engineering ,Chemistry ,Superheated steam ,General Chemistry ,Furfural ,Pyrolysis - Published
- 2020
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23. Synergistic effects of phenethyl-bridged DOPO derivative with Al(OH)3 on flame retardancy for epoxy resins
- Author
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Tu Chunyun, Mei Wang, Wei Yan, Tian Qin, Wang Kui, Huang Weijiang, and Tao Wang
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Materials science ,Polymers and Plastics ,General Chemical Engineering ,chemistry.chemical_element ,Epoxy ,chemistry.chemical_compound ,chemistry ,Aluminium ,visual_art ,Polymer chemistry ,Materials Chemistry ,visual_art.visual_art_medium ,Hydroxide ,Derivative (chemistry) - Abstract
Phenethyl-bridged DOPO derivative (DiDOPO) was combined with organo-modified aluminum hydroxide (OATH) in an epoxy resin (EP) to improve its flame retardancy. The results indicated that the introdu...
- Published
- 2019
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24. Response of High Temperature Threat on the Physiological Characters of Alfalfa
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Liu DaLin, Yang JunQiao, Hu KaiQi, Wang Kui, Zhang Hua, Cao XiChun, and Liu ZhaoMing
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General Medicine - Published
- 2019
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25. Guidelines for the use and interpretation of assays for monitoring autophagy (4th edition)1
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Klionsky, Daniel J, Abdel-Aziz, Amal Kamal, Abdelfatah, Sara, Abdellatif, Mahmoud, Abdoli, Asghar, Abel, Steffen, Abeliovich, Hagai, Abildgaard, Marie H, Abudu, Yakubu Princely, Acevedo-Arozena, Abraham, Adamopoulos, Iannis E, Adeli, Khosrow, Adolph, Timon E, Adornetto, Annagrazia, Aflaki, Elma, Agam, Galila, Agarwal, Anupam, Aggarwal, Bharat B, Agnello, Maria, Agostinis, Patrizia, Agrewala, Javed N, Agrotis, Alexander, Aguilar, Patricia V, Ahmad, S Tariq, Ahmed, Zubair M, Ahumada-Castro, Ulises, Aits, Sonja, Aizawa, Shu, Akkoc, Yunus, Akoumianaki, Tonia, Akpinar, Hafize Aysin, Al-Abd, Ahmed M, Al-Akra, Lina, Al-Gharaibeh, Abeer, Alaoui-Jamali, Moulay A, Alberti, Simon, Alcocer-Gómez, Elísabet, Alessandri, Cristiano, Ali, Muhammad, Alim Al-Bari, M Abdul, Aliwaini, Saeb, Alizadeh, Javad, Almacellas, Eugènia, Almasan, Alexandru, Alonso, Alicia, Alonso, Guillermo D, Altan-Bonnet, Nihal, Altieri, Dario C, Álvarez, Élida MC, Alves, Sara, Alves Da Costa, Cristine, Alzaharna, Mazen M, Amadio, Marialaura, Amantini, Consuelo, Amaral, Cristina, Ambrosio, Susanna, Amer, Amal O, Ammanathan, Veena, An, Zhenyi, Andersen, Stig U, Andrabi, Shaida A, Andrade-Silva, Magaiver, Andres, Allen M, Angelini, Sabrina, Ann, David, Anozie, Uche C, Ansari, Mohammad Y, Antas, Pedro, Antebi, Adam, Antón, Zuriñe, Anwar, Tahira, Apetoh, Lionel, Apostolova, Nadezda, Araki, Toshiyuki, Araki, Yasuhiro, Arasaki, Kohei, Araújo, Wagner L, Araya, Jun, Arden, Catherine, Arévalo, Maria-Angeles, Arguelles, Sandro, Arias, Esperanza, Arikkath, Jyothi, Arimoto, Hirokazu, Ariosa, Aileen R, Armstrong-James, Darius, Arnauné-Pelloquin, Laetitia, Aroca, Angeles, Arroyo, Daniela S, Arsov, Ivica, Artero, Rubén, Asaro, Dalia Maria Lucia, Aschner, Michael, Ashrafizadeh, Milad, Ashur-Fabian, Osnat, Atanasov, Atanas G, Au, Alicia K, Auberger, Patrick, Auner, Holger W, Aurelian, Laure, Autelli, Riccardo, Avagliano, Laura, Ávalos, Yenniffer, Aveic, Sanja, Aveleira, Célia Alexandra, Avin-Wittenberg, Tamar, Aydin, Yucel, Ayton, Scott, Ayyadevara, Srinivas, Azzopardi, Maria, Baba, Misuzu, Backer, Jonathan M, Backues, Steven K, Bae, Dong-Hun, Bae, Ok-Nam, Bae, Soo Han, Baehrecke, Eric H, Baek, Ahruem, Baek, Seung-Hoon, Baek, Sung Hee, Bagetta, Giacinto, Bagniewska-Zadworna, Agnieszka, Bai, Hua, Bai, Jie, Bai, Xiyuan, Bai, Yidong, Bairagi, Nandadulal, Baksi, Shounak, Balbi, Teresa, Baldari, Cosima T, Balduini, Walter, Ballabio, Andrea, Ballester, Maria, Balazadeh, Salma, Balzan, Rena, Bandopadhyay, Rina, Banerjee, Sreeparna, Banerjee, Sulagna, Bánréti, Ágnes, Bao, Yan, Baptista, Mauricio S, Baracca, Alessandra, Barbati, Cristiana, Bargiela, Ariadna, Barilà, Daniela, Barlow, Peter G, Barmada, Sami J, Barreiro, Esther, Barreto, George E, Bartek, Jiri, Bartel, Bonnie, Bartolome, Alberto, Barve, Gaurav R, Basagoudanavar, Suresh H, Bassham, Diane C, Bast, Robert C, Basu, Alakananda, Batoko, Henri, Batten, Isabella, Baulieu, Etienne E, Baumgarner, Bradley L, Bayry, Jagadeesh, Beale, Rupert, Beau, Isabelle, Beaumatin, Florian, Bechara, Luiz RG, Beck, George R, Beers, Michael F, Begun, Jakob, Behrends, Christian, Behrens, Georg MN, Bei, Roberto, Bejarano, Eloy, Bel, Shai, Behl, Christian, Belaid, Amine, Belgareh-Touzé, Naïma, Bellarosa, Cristina, Belleudi, Francesca, Belló Pérez, Melissa, Bello-Morales, Raquel, Beltran, Jackeline Soares De Oliveira, Beltran, Sebastián, Benbrook, Doris Mangiaracina, Bendorius, Mykolas, Benitez, Bruno A, Benito-Cuesta, Irene, Bensalem, Julien, Berchtold, Martin W, Berezowska, Sabina, Bergamaschi, Daniele, Bergami, Matteo, Bergmann, Andreas, Berliocchi, Laura, Berlioz-Torrent, Clarisse, Bernard, Amélie, Berthoux, Lionel, Besirli, Cagri G, Besteiro, Sebastien, Betin, Virginie M, Beyaert, Rudi, Bezbradica, Jelena S, Bhaskar, Kiran, Bhatia-Kissova, Ingrid, Bhattacharya, Resham, Bhattacharya, Sujoy, Bhattacharyya, Shalmoli, Bhuiyan, Md Shenuarin, Bhutia, Sujit Kumar, Bi, Lanrong, Bi, Xiaolin, Biden, Trevor J, Bijian, Krikor, Billes, Viktor A, Binart, Nadine, Bincoletto, Claudia, Birgisdottir, Asa B, Bjorkoy, Geir, Blanco, Gonzalo, Blas-Garcia, Ana, Blasiak, Janusz, Blomgran, Robert, Blomgren, Klas, Blum, Janice S, Boada-Romero, Emilio, Boban, Mirta, Boesze-Battaglia, Kathleen, Boeuf, Philippe, Boland, Barry, Bomont, Pascale, Bonaldo, Paolo, Bonam, Srinivasa Reddy, Bonfili, Laura, Bonifacino, Juan S, Boone, Brian A, Bootman, Martin D, Bordi, Matteo, Borner, Christoph, Bornhauser, Beat C, Borthakur, Gautam, Bosch, Jürgen, Bose, Santanu, Botana, Luis M, Botas, Juan, Boulanger, Chantal M, Boulton, Michael E, Bourdenx, Mathieu, Bourgeois, Benjamin, Bourke, Nollaig M, Bousquet, Guilhem, Boya, Patricia, Bozhkov, Peter V, Bozi, Luiz HM, Bozkurt, Tolga O, Brackney, Doug E, Brandts, Christian H, Braun, Ralf J, Braus, Gerhard H, Bravo-Sagua, Roberto, Bravo-San Pedro, José M, Brest, Patrick, Bringer, Marie-Agnès, Briones-Herrera, Alfredo, Broaddus, V Courtney, Brodersen, Peter, Brodsky, Jeffrey L, Brody, Steven L, Bronson, Paola G, Bronstein, Jeff M, Brown, Carolyn N, Brown, Rhoderick E, Brum, Patricia C, Brumell, John H, Brunetti-Pierri, Nicola, Bruno, Daniele, Bryson-Richardson, Robert J, Bucci, Cecilia, Buchrieser, Carmen, Bueno, Marta, Buitrago-Molina, Laura Elisa, Buraschi, Simone, Buch, Shilpa, Buchan, J Ross, Buckingham, Erin M, Budak, Hikmet, Budini, Mauricio, Bultynck, Geert, Burada, Florin, Burgoyne, Joseph R, Burón, M Isabel, Bustos, Victor, Büttner, Sabrina, Butturini, Elena, Byrd, Aaron, Cabas, Isabel, Cabrera-Benitez, Sandra, Cadwell, Ken, Cai, Jingjing, Cai, Lu, Cai, Qian, Cairó, Montserrat, Calbet, Jose A, Caldwell, Guy A, Caldwell, Kim A, Call, Jarrod A, Calvani, Riccardo, Calvo, Ana C, Calvo-Rubio Barrera, Miguel, Camara, Niels Os, Camonis, Jacques H, Camougrand, Nadine, Campanella, Michelangelo, Campbell, Edward M, Campbell-Valois, François-Xavier, Campello, Silvia, Campesi, Ilaria, Campos, Juliane C, Camuzard, Olivier, Cancino, Jorge, Candido De Almeida, Danilo, Canesi, Laura, Caniggia, Isabella, Canonico, Barbara, Cantí, Carles, Cao, Bin, Caraglia, Michele, Caramés, Beatriz, Carchman, Evie H, Cardenal-Muñoz, Elena, Cardenas, Cesar, Cardenas, Luis, Cardoso, Sandra M, Carew, Jennifer S, Carle, Georges F, Carleton, Gillian, Carloni, Silvia, Carmona-Gutierrez, Didac, Carneiro, Leticia A, Carnevali, Oliana, Carosi, Julian M, Carra, Serena, Carrier, Alice, Carrier, Lucie, Carroll, Bernadette, Carter, A Brent, Carvalho, Andreia Neves, Casanova, Magali, Casas, Caty, Casas, Josefina, Cassioli, Chiara, Castillo, Eliseo F, Castillo, Karen, Castillo-Lluva, Sonia, Castoldi, Francesca, Castori, Marco, Castro, Ariel F, Castro-Caldas, Margarida, Castro-Hernandez, Javier, Castro-Obregon, Susana, Catz, Sergio D, Cavadas, Claudia, Cavaliere, Federica, Cavallini, Gabriella, Cavinato, Maria, Cayuela, Maria L, Cebollada Rica, Paula, Cecarini, Valentina, Cecconi, Francesco, Cechowska-Pasko, Marzanna, Cenci, Simone, Ceperuelo-Mallafré, Victòria, Cerqueira, João J, Cerutti, Janete M, Cervia, Davide, Cetintas, Vildan Bozok, Cetrullo, Silvia, Chae, Han-Jung, Chagin, Andrei S, Chai, Chee-Yin, Chakrabarti, Gopal, Chakrabarti, Oishee, Chakraborty, Tapas, Chakraborty, Trinad, Chami, Mounia, Chamilos, Georgios, Chan, David W, Chan, Edmond YW, Chan, Edward D, Chan, HY Edwin, Chan, Helen H, Chan, Hung, Chan, Matthew TV, Chan, Yau Sang, Chandra, Partha K, Chang, Chih-Peng, Chang, Chunmei, Chang, Hao-Chun, Chang, Kai, Chao, Jie, Chapman, Tracey, Charlet-Berguerand, Nicolas, Chatterjee, Samrat, Chaube, Shail K, Chaudhary, Anu, Chauhan, Santosh, Chaum, Edward, Checler, Frédéric, Cheetham, Michael E, Chen, Chang-Shi, Chen, Guang-Chao, Chen, Jian-Fu, Chen, Liam L, Chen, Leilei, Chen, Lin, Chen, Mingliang, Chen, Mu-Kuan, Chen, Ning, Chen, Quan, Chen, Ruey-Hwa, Chen, Shi, Chen, Wei, Chen, Weiqiang, Chen, Xin-Ming, Chen, Xiong-Wen, Chen, Xu, Chen, Yan, Chen, Ye-Guang, Chen, Yingyu, Chen, Yongqiang, Chen, Yu-Jen, Chen, Yue-Qin, Chen, Zhefan Stephen, Chen, Zhi, Chen, Zhi-Hua, Chen, Zhijian J, Chen, Zhixiang, Cheng, Hanhua, Cheng, Jun, Cheng, Shi-Yuan, Cheng, Wei, Cheng, Xiaodong, Cheng, Xiu-Tang, Cheng, Yiyun, Cheng, Zhiyong, Chen, Zhong, Cheong, Heesun, Cheong, Jit Kong, Chernyak, Boris V, Cherry, Sara, Cheung, Chi Fai Randy, Cheung, Chun Hei Antonio, Cheung, King-Ho, Chevet, Eric, Chi, Richard J, Chiang, Alan Kwok Shing, Chiaradonna, Ferdinando, Chiarelli, Roberto, Chiariello, Mario, Chica, Nathalia, Chiocca, Susanna, Chiong, Mario, Chiou, Shih-Hwa, Chiramel, Abhilash I, Chiurchiù, Valerio, Cho, Dong-Hyung, Choe, Seong-Kyu, Choi, Augustine MK, Choi, Mary E, Choudhury, Kamalika Roy, Chow, Norman S, Chu, Charleen T, Chua, Jason P, Chua, John Jia En, Chung, Hyewon, Chung, Kin Pan, Chung, Seockhoon, Chung, So-Hyang, Chung, Yuen-Li, Cianfanelli, Valentina, Ciechomska, Iwona A, Cifuentes, Mariana, Cinque, Laura, Cirak, Sebahattin, Cirone, Mara, Clague, Michael J, Clarke, Robert, Clementi, Emilio, Coccia, Eliana M, Codogno, Patrice, Cohen, Ehud, Cohen, Mickael M, Colasanti, Tania, Colasuonno, Fiorella, Colbert, Robert A, Colell, Anna, Čolić, Miodrag, Coll, Nuria S, Collins, Mark O, Colombo, María I, Colón-Ramos, Daniel A, Combaret, Lydie, Comincini, Sergio, Cominetti, Márcia R, Consiglio, Antonella, Conte, Andrea, Conti, Fabrizio, Contu, Viorica Raluca, Cookson, Mark R, Coombs, Kevin M, Coppens, Isabelle, Corasaniti, Maria Tiziana, Corkery, Dale P, Cordes, Nils, Cortese, Katia, Costa, Maria Do Carmo, Costantino, Sarah, Costelli, Paola, Coto-Montes, Ana, Crack, Peter J, Crespo, Jose L, Criollo, Alfredo, Crippa, Valeria, Cristofani, Riccardo, Csizmadia, Tamas, Cuadrado, Antonio, Cui, Bing, Cui, Jun, Cui, Yixian, Cui, Yong, Culetto, Emmanuel, Cumino, Andrea C, Cybulsky, Andrey V, Czaja, Mark J, Czuczwar, Stanislaw J, D'Adamo, Stefania, D'Amelio, Marcello, D'Arcangelo, Daniela, D'Lugos, Andrew C, D'Orazi, Gabriella, Da Silva, James A, Dafsari, Hormos Salimi, Dagda, Ruben K, Dagdas, Yasin, Daglia, Maria, Dai, Xiaoxia, Dai, Yun, Dai, Yuyuan, Dal Col, Jessica, Dalhaimer, Paul, Dalla Valle, Luisa, Dallenga, Tobias, Dalmasso, Guillaume, Damme, Markus, Dando, Ilaria, Dantuma, Nico P, Darling, April L, Das, Hiranmoy, Dasarathy, Srinivasan, Dasari, Santosh K, Dash, Srikanta, Daumke, Oliver, Dauphinee, Adrian N, Davies, Jeffrey S, Dávila, Valeria A, Davis, Roger J, Davis, Tanja, Dayalan Naidu, Sharadha, De Amicis, Francesca, De Bosscher, Karolien, De Felice, Francesca, De Franceschi, Lucia, De Leonibus, Chiara, De Mattos Barbosa, Mayara G, De Meyer, Guido RY, De Milito, Angelo, De Nunzio, Cosimo, De Palma, Clara, De Santi, Mauro, De Virgilio, Claudio, De Zio, Daniela, Debnath, Jayanta, DeBosch, Brian J, Decuypere, Jean-Paul, Deehan, Mark A, Deflorian, Gianluca, DeGregori, James, Dehay, Benjamin, Del Rio, Gabriel, Delaney, Joe R, Delbridge, Lea MD, Delorme-Axford, Elizabeth, Delpino, M Victoria, Demarchi, Francesca, Dembitz, Vilma, Demers, Nicholas D, Deng, Hongbin, Deng, Zhiqiang, Dengjel, Joern, Dent, Paul, Denton, Donna, DePamphilis, Melvin L, Der, Channing J, Deretic, Vojo, Descoteaux, Albert, Devis, Laura, Devkota, Sushil, Devuyst, Olivier, Dewson, Grant, Dharmasivam, Mahendiran, Dhiman, Rohan, Di Bernardo, Diego, Di Cristina, Manlio, Di Domenico, Fabio, Di Fazio, Pietro, Di Fonzo, Alessio, Di Guardo, Giovanni, Di Guglielmo, Gianni M, Di Leo, Luca, Di Malta, Chiara, Di Nardo, Alessia, Di Rienzo, Martina, Di Sano, Federica, Diallinas, George, Diao, Jiajie, Diaz-Araya, Guillermo, Díaz-Laviada, Inés, Dickinson, Jared M, Diederich, Marc, Dieudé, Mélanie, Dikic, Ivan, Ding, Shiping, Ding, Wen-Xing, Dini, Luciana, Dinić, Jelena, Dinic, Miroslav, Dinkova-Kostova, Albena T, Dionne, Marc S, Distler, Jörg HW, Diwan, Abhinav, Dixon, Ian MC, Djavaheri-Mergny, Mojgan, Dobrinski, Ina, Dobrovinskaya, Oxana, Dobrowolski, Radek, Dobson, Renwick CJ, Đokić, Jelena, Dokmeci Emre, Serap, Donadelli, Massimo, Dong, Bo, Dong, Xiaonan, Dong, Zhiwu, Dorn Ii, Gerald W, Dotsch, Volker, Dou, Huan, Dou, Juan, Dowaidar, Moataz, Dridi, Sami, Drucker, Liat, Du, Ailian, Du, Caigan, Du, Guangwei, Du, Hai-Ning, Du, Li-Lin, Du Toit, André, Duan, Shao-Bin, Duan, Xiaoqiong, Duarte, Sónia P, Dubrovska, Anna, Dunlop, Elaine A, Dupont, Nicolas, Durán, Raúl V, Dwarakanath, Bilikere S, Dyshlovoy, Sergey A, Ebrahimi-Fakhari, Darius, Eckhart, Leopold, Edelstein, Charles L, Efferth, Thomas, Eftekharpour, Eftekhar, Eichinger, Ludwig, Eid, Nabil, Eisenberg, Tobias, Eissa, N Tony, Eissa, Sanaa, Ejarque, Miriam, El Andaloussi, Abdeljabar, El-Hage, Nazira, El-Naggar, Shahenda, Eleuteri, Anna Maria, El-Shafey, Eman S, Elgendy, Mohamed, Eliopoulos, Aristides G, Elizalde, María M, Elks, Philip M, Elsasser, Hans-Peter, Elsherbiny, Eslam S, Emerling, Brooke M, Emre, NC Tolga, Eng, Christina H, Engedal, Nikolai, Engelbrecht, Anna-Mart, Engelsen, Agnete ST, Enserink, Jorrit M, Escalante, Ricardo, Esclatine, Audrey, Escobar-Henriques, Mafalda, Eskelinen, Eeva-Liisa, Espert, Lucile, Eusebio, Makandjou-Ola, Fabrias, Gemma, Fabrizi, Cinzia, Facchiano, Antonio, Facchiano, Francesco, Fadeel, Bengt, Fader, Claudio, Faesen, Alex C, Fairlie, W Douglas, Falcó, Alberto, Falkenburger, Bjorn H, Fan, Daping, Fan, Jie, Fan, Yanbo, Fang, Evandro F, Fang, Yanshan, Fang, Yognqi, Fanto, Manolis, Farfel-Becker, Tamar, Faure, Mathias, Fazeli, Gholamreza, Fedele, Anthony O, Feldman, Arthur M, Feng, Du, Feng, Jiachun, Feng, Lifeng, Feng, Yibin, Feng, Yuchen, Feng, Wei, Fenz Araujo, Thais, Ferguson, Thomas A, Fernández, Álvaro F, Fernandez-Checa, Jose C, Fernández-Veledo, Sonia, Fernie, Alisdair R, Ferrante, Anthony W, Ferraresi, Alessandra, Ferrari, Merari F, Ferreira, Julio CB, Ferro-Novick, Susan, Figueras, Antonio, Filadi, Riccardo, Filigheddu, Nicoletta, Filippi-Chiela, Eduardo, Filomeni, Giuseppe, Fimia, Gian Maria, Fineschi, Vittorio, Finetti, Francesca, Finkbeiner, Steven, Fisher, Edward A, Fisher, Paul B, Flamigni, Flavio, Fliesler, Steven J, Flo, Trude H, Florance, Ida, Florey, Oliver, Florio, Tullio, Fodor, Erika, Follo, Carlo, Fon, Edward A, Forlino, Antonella, Fornai, Francesco, Fortini, Paola, Fracassi, Anna, Fraldi, Alessandro, Franco, Brunella, Franco, Rodrigo, Franconi, Flavia, Frankel, Lisa B, Friedman, Scott L, Fröhlich, Leopold F, Frühbeck, Gema, Fuentes, Jose M, Fujiki, Yukio, Fujita, Naonobu, Fujiwara, Yuuki, Fukuda, Mitsunori, Fulda, Simone, Furic, Luc, Furuya, Norihiko, Fusco, Carmela, Gack, Michaela U, Gaffke, Lidia, Galadari, Sehamuddin, Galasso, Alessia, Galindo, Maria F, Gallolu Kankanamalage, Sachith, Galluzzi, Lorenzo, Galy, Vincent, Gammoh, Noor, Gan, Boyi, Ganley, Ian G, Gao, Feng, Gao, Hui, Gao, Minghui, Gao, Ping, Gao, Shou-Jiang, Gao, Wentao, Gao, Xiaobo, Garcera, Ana, Garcia, Maria Noé, Garcia, Verónica E, García-Del Portillo, Francisco, Garcia-Escudero, Vega, Garcia-Garcia, Aracely, Garcia-Macia, Marina, García-Moreno, Diana, Garcia-Ruiz, Carmen, García-Sanz, Patricia, Garg, Abhishek D, Gargini, Ricardo, Garofalo, Tina, Garry, Robert F, Gassen, Nils C, Gatica, Damian, Ge, Liang, Ge, Wanzhong, Geiss-Friedlander, Ruth, Gelfi, Cecilia, Genschik, Pascal, Gentle, Ian E, Gerbino, Valeria, Gerhardt, Christoph, Germain, Kyla, Germain, Marc, Gewirtz, David A, Ghasemipour Afshar, Elham, Ghavami, Saeid, Ghigo, Alessandra, Ghosh, Manosij, Giamas, Georgios, Giampietri, Claudia, Giatromanolaki, Alexandra, Gibson, Gary E, Gibson, Spencer B, Ginet, Vanessa, Giniger, Edward, Giorgi, Carlotta, Girao, Henrique, Girardin, Stephen E, Giridharan, Mridhula, Giuliano, Sandy, Giulivi, Cecilia, Giuriato, Sylvie, Giustiniani, Julien, Gluschko, Alexander, Goder, Veit, Goginashvili, Alexander, Golab, Jakub, Goldstone, David C, Golebiewska, Anna, Gomes, Luciana R, Gomez, Rodrigo, Gómez-Sánchez, Rubén, Gomez-Puerto, Maria Catalina, Gomez-Sintes, Raquel, Gong, Qingqiu, Goni, Felix M, González-Gallego, Javier, Gonzalez-Hernandez, Tomas, Gonzalez-Polo, Rosa A, Gonzalez-Reyes, Jose A, González-Rodríguez, Patricia, Goping, Ing Swie, Gorbatyuk, Marina S, Gorbunov, Nikolai V, Görgülü, Kıvanç, Gorojod, Roxana M, Gorski, Sharon M, Goruppi, Sandro, Gotor, Cecilia, Gottlieb, Roberta A, Gozes, Illana, Gozuacik, Devrim, Graef, Martin, Gräler, Markus H, Granatiero, Veronica, Grasso, Daniel, Gray, Joshua P, Green, Douglas R, Greenhough, Alexander, Gregory, Stephen L, Griffin, Edward F, Grinstaff, Mark W, Gros, Frederic, Grose, Charles, Gross, Angelina S, Gruber, Florian, Grumati, Paolo, Grune, Tilman, Gu, Xueyan, Guan, Jun-Lin, Guardia, Carlos M, Guda, Kishore, Guerra, Flora, Guerri, Consuelo, Guha, Prasun, Guillén, Carlos, Gujar, Shashi, Gukovskaya, Anna, Gukovsky, Ilya, Gunst, Jan, Günther, Andreas, Guntur, Anyonya R, Guo, Chuanyong, Guo, Chun, Guo, Hongqing, Guo, Lian-Wang, Guo, Ming, Gupta, Pawan, Gupta, Shashi Kumar, Gupta, Swapnil, Gupta, Veer Bala, Gupta, Vivek, Gustafsson, Asa B, Gutterman, David D, H B, Ranjitha, Haapasalo, Annakaisa, Haber, James E, Hać, Aleksandra, Hadano, Shinji, Hafrén, Anders J, Haidar, Mansour, Hall, Belinda S, Halldén, Gunnel, Hamacher-Brady, Anne, Hamann, Andrea, Hamasaki, Maho, Han, Weidong, Hansen, Malene, Hanson, Phyllis I, Hao, Zijian, Harada, Masaru, Harhaji-Trajkovic, Ljubica, Hariharan, Nirmala, Haroon, Nigil, Harris, James, Hasegawa, Takafumi, Hasima Nagoor, Noor, Haspel, Jeffrey A, Haucke, Volker, Hawkins, Wayne D, Hay, Bruce A, Haynes, Cole M, Hayrabedyan, Soren B, Hays, Thomas S, He, Congcong, He, Qin, He, Rong-Rong, He, You-Wen, He, Yu-Ying, Heakal, Yasser, Heberle, Alexander M, Hejtmancik, J Fielding, Helgason, Gudmundur Vignir, Henkel, Vanessa, Herb, Marc, Hergovich, Alexander, Herman-Antosiewicz, Anna, Hernández, Agustín, Hernandez, Carlos, Hernandez-Diaz, Sergio, Hernandez-Gea, Virginia, Herpin, Amaury, Herreros, Judit, Hervás, Javier H, Hesselson, Daniel, Hetz, Claudio, Heussler, Volker T, Higuchi, Yujiro, Hilfiker, Sabine, Hill, Joseph A, Hlavacek, William S, Ho, Emmanuel A, Ho, Idy HT, Ho, Philip Wing-Lok, Ho, Shu-Leong, Ho, Wan Yun, Hobbs, G Aaron, Hochstrasser, Mark, Hoet, Peter HM, Hofius, Daniel, Hofman, Paul, Höhn, Annika, Holmberg, Carina I, Hombrebueno, Jose R, Yi-Ren Hong, Chang-Won Hong, Hooper, Lora V, Hoppe, Thorsten, Horos, Rastislav, Hoshida, Yujin, Hsin, I-Lun, Hsu, Hsin-Yun, Hu, Bing, Hu, Dong, Hu, Li-Fang, Hu, Ming Chang, Hu, Ronggui, Hu, Wei, Hu, Yu-Chen, Hu, Zhuo-Wei, Hua, Fang, Hua, Jinlian, Hua, Yingqi, Huan, Chongmin, Huang, Canhua, Huang, Chuanshu, Huang, Chuanxin, Huang, Chunling, Huang, Haishan, Huang, Kun, Huang, Michael LH, Huang, Rui, Huang, Shan, Huang, Tianzhi, Huang, Xing, Huang, Yuxiang Jack, Huber, Tobias B, Hubert, Virginie, Hubner, Christian A, Hughes, Stephanie M, Hughes, William E, Humbert, Magali, Hummer, Gerhard, Hurley, James H, Hussain, Sabah, Hussain, Salik, Hussey, Patrick J, Hutabarat, Martina, Hwang, Hui-Yun, Hwang, Seungmin, Ieni, Antonio, Ikeda, Fumiyo, Imagawa, Yusuke, Imai, Yuzuru, Imbriano, Carol, Imoto, Masaya, Inman, Denise M, Inoki, Ken, Iovanna, Juan, Iozzo, Renato V, Ippolito, Giuseppe, Irazoqui, Javier E, Iribarren, Pablo, Ishaq, Mohd, Ishikawa, Makoto, Ishimwe, Nestor, Isidoro, Ciro, Ismail, Nahed, Issazadeh-Navikas, Shohreh, Itakura, Eisuke, Ito, Daisuke, Ivankovic, Davor, Ivanova, Saška, Iyer, Anand Krishnan V, Izquierdo, José M, Izumi, Masanori, Jäättelä, Marja, Jabir, Majid Sakhi, Jackson, William T, Jacobo-Herrera, Nadia, Jacomin, Anne-Claire, Jacquin, Elise, Jadiya, Pooja, Jaeschke, Hartmut, Jagannath, Chinnaswamy, Jakobi, Arjen J, Jakobsson, Johan, Janji, Bassam, Jansen-Dürr, Pidder, Jansson, Patric J, Jantsch, Jonathan, Januszewski, Sławomir, Jassey, Alagie, Jean, Steve, Jeltsch-David, Hélène, Jendelova, Pavla, Jenny, Andreas, Jensen, Thomas E, Jessen, Niels, Jewell, Jenna L, Ji, Jing, Jia, Lijun, Jia, Rui, Jiang, Liwen, Jiang, Qing, Jiang, Richeng, Jiang, Teng, Jiang, Xuejun, Jiang, Yu, Jimenez-Sanchez, Maria, Jin, Eun-Jung, Jin, Fengyan, Jin, Hongchuan, Jin, Li, Jin, Luqi, Jin, Meiyan, Jin, Si, Jo, Eun-Kyeong, Joffre, Carine, Johansen, Terje, Johnson, Gail VW, Johnston, Simon A, Jokitalo, Eija, Jolly, Mohit Kumar, Joosten, Leo AB, Jordan, Joaquin, Joseph, Bertrand, Ju, Dianwen, Ju, Jeong-Sun, Ju, Jingfang, Juárez, Esmeralda, Judith, Delphine, Juhász, Gábor, Jun, Youngsoo, Jung, Chang Hwa, Jung, Sung-Chul, Jung, Yong Keun, Jungbluth, Heinz, Jungverdorben, Johannes, Just, Steffen, Kaarniranta, Kai, Kaasik, Allen, Kabuta, Tomohiro, Kaganovich, Daniel, Kahana, Alon, Kain, Renate, Kajimura, Shinjo, Kalamvoki, Maria, Kalia, Manjula, Kalinowski, Danuta S, Kaludercic, Nina, Kalvari, Ioanna, Kaminska, Joanna, Kaminskyy, Vitaliy O, Kanamori, Hiromitsu, Kanasaki, Keizo, Kang, Chanhee, Kang, Rui, Kang, Sang Sun, Kaniyappan, Senthilvelrajan, Kanki, Tomotake, Kanneganti, Thirumala-Devi, Kanthasamy, Anumantha G, Kanthasamy, Arthi, Kantorow, Marc, Kapuy, Orsolya, Karamouzis, Michalis V, Karim, Md Razaul, Karmakar, Parimal, Katare, Rajesh G, Kato, Masaru, Kaufmann, Stefan HE, Kauppinen, Anu, Kaushal, Gur P, Kaushik, Susmita, Kawasaki, Kiyoshi, Kazan, Kemal, Ke, Po-Yuan, Keating, Damien J, Keber, Ursula, Kehrl, John H, Keller, Kate E, Keller, Christian W, Kemper, Jongsook Kim, Kenific, Candia M, Kepp, Oliver, Kermorgant, Stephanie, Kern, Andreas, Ketteler, Robin, Keulers, Tom G, Khalfin, Boris, Khalil, Hany, Khambu, Bilon, Khan, Shahid Y, Khandelwal, Vinoth Kumar Megraj, Khandia, Rekha, Kho, Widuri, Khobrekar, Noopur V, Khuansuwan, Sataree, Khundadze, Mukhran, Killackey, Samuel A, Kim, Dasol, Kim, Deok Ryong, Kim, Do-Hyung, Kim, Dong-Eun, Kim, Eun Young, Kim, Eun-Kyoung, Kim, Hak-Rim, Kim, Hee-Sik, Hyung-Ryong Kim, Kim, Jeong Hun, Kim, Jin Kyung, Kim, Jin-Hoi, Kim, Joungmok, Kim, Ju Hwan, Kim, Keun Il, Kim, Peter K, Kim, Seong-Jun, Kimball, Scot R, Kimchi, Adi, Kimmelman, Alec C, Kimura, Tomonori, King, Matthew A, Kinghorn, Kerri J, Kinsey, Conan G, Kirkin, Vladimir, Kirshenbaum, Lorrie A, Kiselev, Sergey L, Kishi, Shuji, Kitamoto, Katsuhiko, Kitaoka, Yasushi, Kitazato, Kaio, Kitsis, Richard N, Kittler, Josef T, Kjaerulff, Ole, Klein, Peter S, Klopstock, Thomas, Klucken, Jochen, Knævelsrud, Helene, Knorr, Roland L, Ko, Ben CB, Ko, Fred, Ko, Jiunn-Liang, Kobayashi, Hotaka, Kobayashi, Satoru, Koch, Ina, Koch, Jan C, Koenig, Ulrich, Kögel, Donat, Koh, Young Ho, Koike, Masato, Kohlwein, Sepp D, Kocaturk, Nur M, Komatsu, Masaaki, König, Jeannette, Kono, Toru, Kopp, Benjamin T, Korcsmaros, Tamas, Korkmaz, Gözde, Korolchuk, Viktor I, Korsnes, Mónica Suárez, Koskela, Ali, Kota, Janaiah, Kotake, Yaichiro, Kotler, Monica L, Kou, Yanjun, Koukourakis, Michael I, Koustas, Evangelos, Kovacs, Attila L, Kovács, Tibor, Koya, Daisuke, Kozako, Tomohiro, Kraft, Claudine, Krainc, Dimitri, Krämer, Helmut, Krasnodembskaya, Anna D, Kretz-Remy, Carole, Kroemer, Guido, Ktistakis, Nicholas T, Kuchitsu, Kazuyuki, Kuenen, Sabine, Kuerschner, Lars, Kukar, Thomas, Kumar, Ajay, Kumar, Ashok, Kumar, Deepak, Kumar, Dhiraj, Kumar, Sharad, Kume, Shinji, Kumsta, Caroline, Kundu, Chanakya N, Kundu, Mondira, Kunnumakkara, Ajaikumar B, Kurgan, Lukasz, Kutateladze, Tatiana G, Kutlu, Ozlem, Kwak, SeongAe, Kwon, Ho Jeong, Kwon, Taeg Kyu, Kwon, Yong Tae, Kyrmizi, Irene, La Spada, Albert, Labonté, Patrick, Ladoire, Sylvain, Laface, Ilaria, Lafont, Frank, Lagace, Diane C, Lahiri, Vikramjit, Lai, Zhibing, Laird, Angela S, Lakkaraju, Aparna, Lamark, Trond, Lan, Sheng-Hui, Landajuela, Ane, Lane, Darius, Lane, Jon D, Lang, Charles H, Lange, Carsten, Langel, Ülo, Langer, Rupert, Lapaquette, Pierre, Laporte, Jocelyn, LaRusso, Nicholas F, Lastres-Becker, Isabel, Lau, Wilson Chun Yu, Laurie, Gordon W, Lavandero, Sergio, Law, Betty Yuen Kwan, Law, Helen Ka-Wai, Layfield, Rob, Le, Weidong, Le Stunff, Herve, Leary, Alexandre Y, Lebrun, Jean-Jacques, Leck, Lionel YW, Leduc-Gaudet, Jean-Philippe, Lee, Changwook, Lee, Chung-Pei, Lee, Da-Hye, Lee, Edward B, Lee, Erinna F, Lee, Gyun Min, Lee, He-Jin, Lee, Heung Kyu, Lee, Jae Man, Lee, Jason S, Lee, Jin-A, Lee, Joo-Yong, Lee, Jun Hee, Lee, Michael, Lee, Min Goo, Lee, Min Jae, Lee, Myung-Shik, Lee, Sang Yoon, Lee, Seung-Jae, Lee, Stella Y, Lee, Sung Bae, Lee, Won Hee, Lee, Ying-Ray, Lee, Yong-Ho, Lee, Youngil, Lefebvre, Christophe, Legouis, Renaud, Lei, Yu L, Lei, Yuchen, Leikin, Sergey, Leitinger, Gerd, Lemus, Leticia, Leng, Shuilong, Lenoir, Olivia, Lenz, Guido, Lenz, Heinz Josef, Lenzi, Paola, León, Yolanda, Leopoldino, Andréia M, Leschczyk, Christoph, Leskelä, Stina, Letellier, Elisabeth, Leung, Chi-Ting, Leung, Po Sing, Leventhal, Jeremy S, Levine, Beth, Lewis, Patrick A, Ley, Klaus, Li, Bin, Li, Da-Qiang, Li, Jianming, Li, Jing, Li, Jiong, Li, Ke, Li, Liwu, Li, Mei, Li, Min, Li, Ming, Li, Mingchuan, Li, Pin-Lan, Li, Ming-Qing, Li, Qing, Li, Sheng, Li, Tiangang, Li, Wei, Li, Wenming, Li, Xue, Li, Yi-Ping, Li, Yuan, Li, Zhiqiang, Li, Zhiyong, Li, Zhiyuan, Lian, Jiqin, Liang, Chengyu, Liang, Qiangrong, Liang, Weicheng, Liang, Yongheng, Liang, YongTian, Liao, Guanghong, Liao, Lujian, Liao, Mingzhi, Liao, Yung-Feng, Librizzi, Mariangela, Lie, Pearl PY, Lilly, Mary A, Lim, Hyunjung J, Lima, Thania RR, Limana, Federica, Lin, Chao, Lin, Chih-Wen, Lin, Dar-Shong, Lin, Fu-Cheng, Lin, Jiandie D, Lin, Kurt M, Lin, Kwang-Huei, Lin, Liang-Tzung, Lin, Pei-Hui, Lin, Qiong, Lin, Shaofeng, Lin, Su-Ju, Lin, Wenyu, Lin, Xueying, Lin, Yao-Xin, Lin, Yee-Shin, Linden, Rafael, Lindner, Paula, Ling, Shuo-Chien, Lingor, Paul, Linnemann, Amelia K, Liou, Yih-Cherng, Lipinski, Marta M, Lipovšek, Saška, Lira, Vitor A, Lisiak, Natalia, Liton, Paloma B, Liu, Chao, Liu, Ching-Hsuan, Liu, Chun-Feng, Liu, Cui Hua, Liu, Fang, Liu, Hao, Liu, Hsiao-Sheng, Liu, Hua-Feng, Liu, Huifang, Liu, Jia, Liu, Jing, Liu, Julia, Liu, Leyuan, Liu, Longhua, Liu, Meilian, Liu, Qin, Liu, Wei, Liu, Wende, Liu, Xiao-Hong, Liu, Xiaodong, Liu, Xingguo, Liu, Xu, Liu, Xuedong, Liu, Yanfen, Liu, Yang, Liu, Yueyang, Liu, Yule, Livingston, J Andrew, Lizard, Gerard, Lizcano, Jose M, Ljubojevic-Holzer, Senka, LLeonart, Matilde E, Llobet-Navàs, David, Llorente, Alicia, Lo, Chih Hung, Lobato-Márquez, Damián, Long, Qi, Long, Yun Chau, Loos, Ben, Loos, Julia A, López, Manuela G, López-Doménech, Guillermo, López-Guerrero, José Antonio, López-Jiménez, Ana T, López-Pérez, Óscar, López-Valero, Israel, Lorenowicz, Magdalena J, Lorente, Mar, Lorincz, Peter, Lossi, Laura, Lotersztajn, Sophie, Lovat, Penny E, Lovell, Jonathan F, Lovy, Alenka, Lőw, Péter, Lu, Guang, Lu, Haocheng, Lu, Jia-Hong, Lu, Jin-Jian, Lu, Mengji, Lu, Shuyan, Luciani, Alessandro, Lucocq, John M, Ludovico, Paula, Luftig, Micah A, Luhr, Morten, Luis-Ravelo, Diego, Lum, Julian J, Luna-Dulcey, Liany, Lund, Anders H, Lund, Viktor K, Lünemann, Jan D, Lüningschrör, Patrick, Luo, Honglin, Luo, Rongcan, Luo, Shouqing, Luo, Zhi, Luparello, Claudio, Lüscher, Bernhard, Luu, Luan, Lyakhovich, Alex, Lyamzaev, Konstantin G, Lystad, Alf Håkon, Lytvynchuk, Lyubomyr, Ma, Alvin C, Ma, Changle, Ma, Mengxiao, Ma, Ning-Fang, Ma, Quan-Hong, Ma, Xinliang, Ma, Yueyun, Ma, Zhenyi, MacDougald, Ormond A, Macian, Fernando, MacIntosh, Gustavo C, MacKeigan, Jeffrey P, Macleod, Kay F, Maday, Sandra, Madeo, Frank, Madesh, Muniswamy, Madl, Tobias, Madrigal-Matute, Julio, Maeda, Akiko, Maejima, Yasuhiro, Magarinos, Marta, Mahavadi, Poornima, Maiani, Emiliano, Maiese, Kenneth, Maiti, Panchanan, Maiuri, Maria Chiara, Majello, Barbara, Major, Michael B, Makareeva, Elena, Malik, Fayaz, Mallilankaraman, Karthik, Malorni, Walter, Maloyan, Alina, Mammadova, Najiba, Man, Gene Chi Wai, Manai, Federico, Mancias, Joseph D, Mandelkow, Eva-Maria, Mandell, Michael A, Manfredi, Angelo A, Manjili, Masoud H, Manjithaya, Ravi, Manque, Patricio, Manshian, Bella B, Manzano, Raquel, Manzoni, Claudia, Mao, Kai, Marchese, Cinzia, Marchetti, Sandrine, Marconi, Anna Maria, Marcucci, Fabrizio, Mardente, Stefania, Mareninova, Olga A, Margeta, Marta, Mari, Muriel, Marinelli, Sara, Marinelli, Oliviero, Mariño, Guillermo, Mariotto, Sofia, Marshall, Richard S, Marten, Mark R, Martens, Sascha, Martin, Alexandre PJ, Martin, Katie R, Martin, Sara, Martin, Shaun, Martín-Segura, Adrián, Martín-Acebes, Miguel A, Martin-Burriel, Inmaculada, Martin-Rincon, Marcos, Martin-Sanz, Paloma, Martina, José A, Martinet, Wim, Martinez, Aitor, Martinez, Ana, Martinez, Jennifer, Martinez Velazquez, Moises, Martinez-Lopez, Nuria, Martinez-Vicente, Marta, Martins, Daniel O, Martins, Joilson O, Martins, Waleska K, Martins-Marques, Tania, Marzetti, Emanuele, Masaldan, Shashank, Masclaux-Daubresse, Celine, Mashek, Douglas G, Massa, Valentina, Massieu, Lourdes, Masson, Glenn R, Masuelli, Laura, Masyuk, Anatoliy I, Masyuk, Tetyana V, Matarrese, Paola, Matheu, Ander, Matoba, Satoaki, Matsuzaki, Sachiko, Mattar, Pamela, Matte, Alessandro, Mattoscio, Domenico, Mauriz, José L, Mauthe, Mario, Mauvezin, Caroline, Maverakis, Emanual, Maycotte, Paola, Mayer, Johanna, Mazzoccoli, Gianluigi, Mazzoni, Cristina, Mazzulli, Joseph R, McCarty, Nami, McDonald, Christine, McGill, Mitchell R, McKenna, Sharon L, McLaughlin, BethAnn, McLoughlin, Fionn, McNiven, Mark A, McWilliams, Thomas G, Mechta-Grigoriou, Fatima, Medeiros, Tania Catarina, Medina, Diego L, Megeney, Lynn A, Megyeri, Klara, Mehrpour, Maryam, Mehta, Jawahar L, Meijer, Alfred J, Meijer, Annemarie H, Mejlvang, Jakob, Meléndez, Alicia, Melk, Annette, Memisoglu, Gonen, Mendes, Alexandrina F, Meng, Delong, Meng, Fei, Meng, Tian, Menna-Barreto, Rubem, Menon, Manoj B, Mercer, Carol, Mercier, Anne E, Mergny, Jean-Louis, Merighi, Adalberto, Merkley, Seth D, Merla, Giuseppe, Meske, Volker, Mestre, Ana Cecilia, Metur, Shree Padma, Meyer, Christian, Meyer, Hemmo, Mi, Wenyi, Mialet-Perez, Jeanne, Miao, Junying, Micale, Lucia, Miki, Yasuo, Milan, Enrico, Milczarek, Małgorzata, Miller, Dana L, Miller, Samuel I, Miller, Silke, Millward, Steven W, Milosevic, Ira, Minina, Elena A, Mirzaei, Hamed, Mirzaei, Hamid Reza, Mirzaei, Mehdi, Mishra, Amit, Mishra, Nandita, Mishra, Paras Kumar, Misirkic Marjanovic, Maja, Misasi, Roberta, Misra, Amit, Misso, Gabriella, Mitchell, Claire, Mitou, Geraldine, Miura, Tetsuji, Miyamoto, Shigeki, Miyazaki, Makoto, Miyazaki, Mitsunori, Miyazaki, Taiga, Miyazawa, Keisuke, Mizushima, Noboru, Mogensen, Trine H, Mograbi, Baharia, Mohammadinejad, Reza, Mohamud, Yasir, Mohanty, Abhishek, Mohapatra, Sipra, Möhlmann, Torsten, Mohmmed, Asif, Moles, Anna, Moley, Kelle H, Molinari, Maurizio, Mollace, Vincenzo, Møller, Andreas Buch, Mollereau, Bertrand, Mollinedo, Faustino, Montagna, Costanza, Monteiro, Mervyn J, Montella, Andrea, Montes, L Ruth, Montico, Barbara, Mony, Vinod K, Monzio Compagnoni, Giacomo, Moore, Michael N, Moosavi, Mohammad A, Mora, Ana L, Mora, Marina, Morales-Alamo, David, Moratalla, Rosario, Moreira, Paula I, Morelli, Elena, Moreno, Sandra, Moreno-Blas, Daniel, Moresi, Viviana, Morga, Benjamin, Morgan, Alwena H, Morin, Fabrice, Morishita, Hideaki, Moritz, Orson L, Moriyama, Mariko, Moriyasu, Yuji, Morleo, Manuela, Morselli, Eugenia, Moruno-Manchon, Jose F, Moscat, Jorge, Mostowy, Serge, Motori, Elisa, Moura, Andrea Felinto, Moustaid-Moussa, Naima, Mrakovcic, Maria, Muciño-Hernández, Gabriel, Mukherjee, Anupam, Mukhopadhyay, Subhadip, Mulcahy Levy, Jean M, Mulero, Victoriano, Muller, Sylviane, Münch, Christian, Munjal, Ashok, Munoz-Canoves, Pura, Muñoz-Galdeano, Teresa, Münz, Christian, Murakawa, Tomokazu, Muratori, Claudia, Murphy, Brona M, Murphy, J Patrick, Murthy, Aditya, Myöhänen, Timo T, Mysorekar, Indira U, Mytych, Jennifer, Nabavi, Seyed Mohammad, Nabissi, Massimo, Nagy, Péter, Nah, Jihoon, Nahimana, Aimable, Nakagawa, Ichiro, Nakamura, Ken, Nakatogawa, Hitoshi, Nandi, Shyam S, Nanjundan, Meera, Nanni, Monica, Napolitano, Gennaro, Nardacci, Roberta, Narita, Masashi, Nassif, Melissa, Nathan, Ilana, Natsumeda, Manabu, Naude, Ryno J, Naumann, Christin, Naveiras, Olaia, Navid, Fatemeh, Nawrocki, Steffan T, Nazarko, Taras Y, Nazio, Francesca, Negoita, Florentina, Neill, Thomas, Neisch, Amanda L, Neri, Luca M, Netea, Mihai G, Neubert, Patrick, Neufeld, Thomas P, Neumann, Dietbert, Neutzner, Albert, Newton, Phillip T, Ney, Paul A, Nezis, Ioannis P, Ng, Charlene CW, Ng, Tzi Bun, Nguyen, Hang TT, Nguyen, Long T, Ni, Hong-Min, Ní Cheallaigh, Clíona, Ni, Zhenhong, Nicolao, M Celeste, Nicoli, Francesco, Nieto-Diaz, Manuel, Nilsson, Per, Ning, Shunbin, Niranjan, Rituraj, Nishimune, Hiroshi, Niso-Santano, Mireia, Nixon, Ralph A, Nobili, Annalisa, Nobrega, Clevio, Noda, Takeshi, Nogueira-Recalde, Uxía, Nolan, Trevor M, Nombela, Ivan, Novak, Ivana, Novoa, Beatriz, Nozawa, Takashi, Nukina, Nobuyuki, Nussbaum-Krammer, Carmen, Nylandsted, Jesper, O'Donovan, Tracey R, O'Leary, Seónadh M, O'Rourke, Eyleen J, O'Sullivan, Mary P, O'Sullivan, Timothy E, Oddo, Salvatore, Oehme, Ina, Ogawa, Michinaga, Ogier-Denis, Eric, Ogmundsdottir, Margret H, Ogretmen, Besim, Oh, Goo Taeg, Oh, Seon-Hee, Oh, Young J, Ohama, Takashi, Ohashi, Yohei, Ohmuraya, Masaki, Oikonomou, Vasileios, Ojha, Rani, Okamoto, Koji, Okazawa, Hitoshi, Oku, Masahide, Oliván, Sara, Oliveira, Jorge MA, Ollmann, Michael, Olzmann, James A, Omari, Shakib, Omary, M Bishr, Önal, Gizem, Ondrej, Martin, Ong, Sang-Bing, Ong, Sang-Ging, Onnis, Anna, Orellana, Juan A, Orellana-Muñoz, Sara, Ortega-Villaizan, Maria Del Mar, Ortiz-Gonzalez, Xilma R, Ortona, Elena, Osiewacz, Heinz D, Osman, Abdel-Hamid K, Osta, Rosario, Otegui, Marisa S, Otsu, Kinya, Ott, Christiane, Ottobrini, Luisa, Ou, Jing-Hsiung James, Outeiro, Tiago F, Oynebraten, Inger, Ozturk, Melek, Pagès, Gilles, Pahari, Susanta, Pajares, Marta, Pajvani, Utpal B, Pal, Rituraj, Paladino, Simona, Pallet, Nicolas, Palmieri, Michela, Palmisano, Giuseppe, Palumbo, Camilla, Pampaloni, Francesco, Pan, Lifeng, Pan, Qingjun, Pan, Wenliang, Pan, Xin, Panasyuk, Ganna, Pandey, Rahul, Pandey, Udai B, Pandya, Vrajesh, Paneni, Francesco, Pang, Shirley Y, Panzarini, Elisa, Papademetrio, Daniela L, Papaleo, Elena, Papinski, Daniel, Papp, Diana, Park, Eun Chan, Park, Hwan Tae, Park, Ji-Man, Park, Jong-In, Park, Joon Tae, Park, Junsoo, Park, Sang Chul, Park, Sang-Youel, Parola, Abraham H, Parys, Jan B, Pasquier, Adrien, Pasquier, Benoit, Passos, João F, Pastore, Nunzia, Patel, Hemal H, Patschan, Daniel, Pattingre, Sophie, Pedraza-Alva, Gustavo, Pedraza-Chaverri, Jose, Pedrozo, Zully, Pei, Gang, Pei, Jianming, Peled-Zehavi, Hadas, Pellegrini, Joaquín M, Pelletier, Joffrey, Peñalva, Miguel A, Peng, Di, Peng, Ying, Penna, Fabio, Pennuto, Maria, Pentimalli, Francesca, Pereira, Cláudia Mf, Pereira, Gustavo JS, Pereira, Lilian C, Pereira De Almeida, Luis, Perera, Nirma D, Pérez-Lara, Ángel, Perez-Oliva, Ana B, Pérez-Pérez, María Esther, Periyasamy, Palsamy, Perl, Andras, Perrotta, Cristiana, Perrotta, Ida, Pestell, Richard G, Petersen, Morten, Petrache, Irina, Petrovski, Goran, Pfirrmann, Thorsten, Pfister, Astrid S, Philips, Jennifer A, Pi, Huifeng, Picca, Anna, Pickrell, Alicia M, Picot, Sandy, Pierantoni, Giovanna M, Pierdominici, Marina, Pierre, Philippe, Pierrefite-Carle, Valérie, Pierzynowska, Karolina, Pietrocola, Federico, Pietruczuk, Miroslawa, Pignata, Claudio, Pimentel-Muiños, Felipe X, Pinar, Mario, Pinheiro, Roberta O, Pinkas-Kramarski, Ronit, Pinton, Paolo, Pircs, Karolina, Piya, Sujan, Pizzo, Paola, Plantinga, Theo S, Platta, Harald W, Plaza-Zabala, Ainhoa, Plomann, Markus, Plotnikov, Egor Y, Plun-Favreau, Helene, Pluta, Ryszard, Pocock, Roger, Pöggeler, Stefanie, Pohl, Christian, Poirot, Marc, Poletti, Angelo, Ponpuak, Marisa, Popelka, Hana, Popova, Blagovesta, Porta, Helena, Porte Alcon, Soledad, Portilla-Fernandez, Eliana, Post, Martin, Potts, Malia B, Poulton, Joanna, Powers, Ted, Prahlad, Veena, Prajsnar, Tomasz K, Praticò, Domenico, Prencipe, Rosaria, Priault, Muriel, Proikas-Cezanne, Tassula, Promponas, Vasilis J, Proud, Christopher G, Puertollano, Rosa, Puglielli, Luigi, Pulinilkunnil, Thomas, Puri, Deepika, Puri, Rajat, Puyal, Julien, Qi, Xiaopeng, Qi, Yongmei, Qian, Wenbin, Qiang, Lei, Qiu, Yu, Quadrilatero, Joe, Quarleri, Jorge, Raben, Nina, Rabinowich, Hannah, Ragona, Debora, Ragusa, Michael J, Rahimi, Nader, Rahmati, Marveh, Raia, Valeria, Raimundo, Nuno, Rajasekaran, Namakkal-Soorappan, Ramachandra Rao, Sriganesh, Rami, Abdelhaq, Ramírez-Pardo, Ignacio, Ramsden, David B, Randow, Felix, Rangarajan, Pundi N, Ranieri, Danilo, Rao, Hai, Rao, Lang, Rao, Rekha, Rathore, Sumit, Ratnayaka, J Arjuna, Ratovitski, Edward A, Ravanan, Palaniyandi, Ravegnini, Gloria, Ray, Swapan K, Razani, Babak, Rebecca, Vito, Reggiori, Fulvio, Régnier-Vigouroux, Anne, Reichert, Andreas S, Reigada, David, Reiling, Jan H, Rein, Theo, Reipert, Siegfried, Rekha, Rokeya Sultana, Ren, Hongmei, Ren, Jun, Ren, Weichao, Renault, Tristan, Renga, Giorgia, Reue, Karen, Rewitz, Kim, Ribeiro De Andrade Ramos, Bruna, Riazuddin, S Amer, Ribeiro-Rodrigues, Teresa M, Ricci, Jean-Ehrland, Ricci, Romeo, Riccio, Victoria, Richardson, Des R, Rikihisa, Yasuko, Risbud, Makarand V, Risueño, Ruth M, Ritis, Konstantinos, Rizza, Salvatore, Rizzuto, Rosario, Roberts, Helen C, Roberts, Luke D, Robinson, Katherine J, Roccheri, Maria Carmela, Rocchi, Stephane, Rodney, George G, Rodrigues, Tiago, Rodrigues Silva, Vagner Ramon, Rodriguez, Amaia, Rodriguez-Barrueco, Ruth, Rodriguez-Henche, Nieves, Rodriguez-Rocha, Humberto, Roelofs, Jeroen, Rogers, Robert S, Rogov, Vladimir V, Rojo, Ana I, Rolka, Krzysztof, Romanello, Vanina, Romani, Luigina, Romano, Alessandra, Romano, Patricia S, Romeo-Guitart, David, Romero, Luis C, Romero, Montserrat, Roney, Joseph C, Rongo, Christopher, Roperto, Sante, Rosenfeldt, Mathias T, Rosenstiel, Philip, Rosenwald, Anne G, Roth, Kevin A, Roth, Lynn, Roth, Steven, Rouschop, Kasper MA, Roussel, Benoit D, Roux, Sophie, Rovere-Querini, Patrizia, Roy, Ajit, Rozieres, Aurore, Ruano, Diego, Rubinsztein, David C, Rubtsova, Maria P, Ruckdeschel, Klaus, Ruckenstuhl, Christoph, Rudolf, Emil, Rudolf, Rüdiger, Ruggieri, Alessandra, Ruparelia, Avnika Ashok, Rusmini, Paola, Russell, Ryan R, Russo, Gian Luigi, Russo, Maria, Russo, Rossella, Ryabaya, Oxana O, Ryan, Kevin M, Ryu, Kwon-Yul, Sabater-Arcis, Maria, Sachdev, Ulka, Sacher, Michael, Sachse, Carsten, Sadhu, Abhishek, Sadoshima, Junichi, Safren, Nathaniel, Saftig, Paul, Sagona, Antonia P, Sahay, Gaurav, Sahebkar, Amirhossein, Sahin, Mustafa, Sahin, Ozgur, Sahni, Sumit, Saito, Nayuta, Saito, Shigeru, Saito, Tsunenori, Sakai, Ryohei, Sakai, Yasuyoshi, Sakamaki, Jun-Ichi, Saksela, Kalle, Salazar, Gloria, Salazar-Degracia, Anna, Salekdeh, Ghasem H, Saluja, Ashok K, Sampaio-Marques, Belém, Sanchez, Maria Cecilia, Sanchez-Alcazar, Jose A, Sanchez-Vera, Victoria, Sancho-Shimizu, Vanessa, Sanderson, J Thomas, Sandri, Marco, Santaguida, Stefano, Santambrogio, Laura, Santana, Magda M, Santoni, Giorgio, Sanz, Alberto, Sanz, Pascual, Saran, Shweta, Sardiello, Marco, Sargeant, Timothy J, Sarin, Apurva, Sarkar, Chinmoy, Sarkar, Sovan, Sarrias, Maria-Rosa, Sarkar, Surajit, Sarmah, Dipanka Tanu, Sarparanta, Jaakko, Sathyanarayan, Aishwarya, Sathyanarayanan, Ranganayaki, Scaglione, K Matthew, Scatozza, Francesca, Schaefer, Liliana, Schafer, Zachary T, Schaible, Ulrich E, Schapira, Anthony HV, Scharl, Michael, Schatzl, Hermann M, Schein, Catherine H, Scheper, Wiep, Scheuring, David, Schiaffino, Maria Vittoria, Schiappacassi, Monica, Schindl, Rainer, Schlattner, Uwe, Schmidt, Oliver, Schmitt, Roland, Schmidt, Stephen D, Schmitz, Ingo, Schmukler, Eran, Schneider, Anja, Schneider, Bianca E, Schober, Romana, Schoijet, Alejandra C, Schott, Micah B, Schramm, Michael, Schröder, Bernd, Schuh, Kai, Schüller, Christoph, Schulze, Ryan J, Schürmanns, Lea, Schwamborn, Jens C, Schwarten, Melanie, Scialo, Filippo, Sciarretta, Sebastiano, Scott, Melanie J, Scotto, Kathleen W, Scovassi, A Ivana, Scrima, Andrea, Scrivo, Aurora, Sebastian, David, Sebti, Salwa, Sedej, Simon, Segatori, Laura, Segev, Nava, Seglen, Per O, Seiliez, Iban, Seki, Ekihiro, Selleck, Scott B, Sellke, Frank W, Selsby, Joshua T, Sendtner, Michael, Senturk, Serif, Seranova, Elena, Sergi, Consolato, Serra-Moreno, Ruth, Sesaki, Hiromi, Settembre, Carmine, Setty, Subba Rao Gangi, Sgarbi, Gianluca, Sha, Ou, Shacka, John J, Shah, Javeed A, Shang, Dantong, Shao, Changshun, Shao, Feng, Sharbati, Soroush, Sharkey, Lisa M, Sharma, Dipali, Sharma, Gaurav, Sharma, Kulbhushan, Sharma, Pawan, Sharma, Surendra, Shen, Han-Ming, Shen, Hongtao, Shen, Jiangang, Shen, Ming, Shen, Weili, Shen, Zheni, Sheng, Rui, Sheng, Zhi, Sheng, Zu-Hang, Shi, Jianjian, Shi, Xiaobing, Shi, Ying-Hong, Shiba-Fukushima, Kahori, Shieh, Jeng-Jer, Shimada, Yohta, Shimizu, Shigeomi, Shimozawa, Makoto, Shintani, Takahiro, Shoemaker, Christopher J, Shojaei, Shahla, Shoji, Ikuo, Shravage, Bhupendra V, Shridhar, Viji, Shu, Chih-Wen, Shu, Hong-Bing, Shui, Ke, Shukla, Arvind K, Shutt, Timothy E, Sica, Valentina, Siddiqui, Aleem, Sierra, Amanda, Sierra-Torre, Virginia, Signorelli, Santiago, Sil, Payel, Silva, Bruno J De Andrade, Silva, Johnatas D, Silva-Pavez, Eduardo, Silvente-Poirot, Sandrine, Simmonds, Rachel E, Simon, Anna Katharina, Simon, Hans-Uwe, Simons, Matias, Singh, Anurag, Singh, Lalit P, Singh, Rajat, Singh, Shivendra V, Singh, Shrawan K, Singh, Sudha B, Singh, Sunaina, Singh, Surinder Pal, Sinha, Debasish, Sinha, Rohit Anthony, Sinha, Sangita, Sirko, Agnieszka, Sirohi, Kapil, Sivridis, Efthimios L, Skendros, Panagiotis, Skirycz, Aleksandra, Slaninová, Iva, Smaili, Soraya S, Smertenko, Andrei, Smith, Matthew D, Soenen, Stefaan J, Sohn, Eun Jung, Sok, Sophia PM, Solaini, Giancarlo, Soldati, Thierry, Soleimanpour, Scott A, Soler, Rosa M, Solovchenko, Alexei, Somarelli, Jason A, Sonawane, Avinash, Song, Fuyong, Song, Hyun Kyu, Song, Ju-Xian, Song, Kunhua, Song, Zhiyin, Soria, Leandro R, Sorice, Maurizio, Soukas, Alexander A, Soukup, Sandra-Fausia, Sousa, Diana, Sousa, Nadia, Spagnuolo, Paul A, Spector, Stephen A, Srinivas Bharath, MM, St Clair, Daret, Stagni, Venturina, Staiano, Leopoldo, Stalnecker, Clint A, Stankov, Metodi V, Stathopulos, Peter B, Stefan, Katja, Stefan, Sven Marcel, Stefanis, Leonidas, Steffan, Joan S, Steinkasserer, Alexander, Stenmark, Harald, Sterneckert, Jared, Stevens, Craig, Stoka, Veronika, Storch, Stephan, Stork, Björn, Strappazzon, Flavie, Strohecker, Anne Marie, Stupack, Dwayne G, Su, Huanxing, Su, Ling-Yan, Su, Longxiang, Suarez-Fontes, Ana M, Subauste, Carlos S, Subbian, Selvakumar, Subirada, Paula V, Sudhandiran, Ganapasam, Sue, Carolyn M, Sui, Xinbing, Summers, Corey, Sun, Guangchao, Sun, Jun, Sun, Kang, Sun, Meng-Xiang, Sun, Qiming, Sun, Yi, Sun, Zhongjie, Sunahara, Karen KS, Sundberg, Eva, Susztak, Katalin, Sutovsky, Peter, Suzuki, Hidekazu, Sweeney, Gary, Symons, J David, Sze, Stephen Cho Wing, Szewczyk, Nathaniel J, Tabęcka-Łonczynska, Anna, Tabolacci, Claudio, Tacke, Frank, Taegtmeyer, Heinrich, Tafani, Marco, Tagaya, Mitsuo, Tai, Haoran, Tait, Stephen WG, Takahashi, Yoshinori, Takats, Szabolcs, Talwar, Priti, Tam, Chit, Tam, Shing Yau, Tampellini, Davide, Tamura, Atsushi, Tan, Chong Teik, Tan, Eng-King, Tan, Ya-Qin, Tanaka, Masaki, Tanaka, Motomasa, Tang, Daolin, Tang, Jingfeng, Tang, Tie-Shan, Tanida, Isei, Tao, Zhipeng, Taouis, Mohammed, Tatenhorst, Lars, Tavernarakis, Nektarios, Taylor, Allen, Taylor, Gregory A, Taylor, Joan M, Tchetina, Elena, Tee, Andrew R, Tegeder, Irmgard, Teis, David, Teixeira, Natercia, Teixeira-Clerc, Fatima, Tekirdag, Kumsal A, Tencomnao, Tewin, Tenreiro, Sandra, Tepikin, Alexei V, Testillano, Pilar S, Tettamanti, Gianluca, Tharaux, Pierre-Louis, Thedieck, Kathrin, Thekkinghat, Arvind A, Thellung, Stefano, Thinwa, Josephine W, Thirumalaikumar, VP, Thomas, Sufi Mary, Thomes, Paul G, Thorburn, Andrew, Thukral, Lipi, Thum, Thomas, Thumm, Michael, Tian, Ling, Tichy, Ales, Till, Andreas, Timmerman, Vincent, Titorenko, Vladimir I, Todi, Sokol V, Todorova, Krassimira, Toivonen, Janne M, Tomaipitinca, Luana, Tomar, Dhanendra, Tomas-Zapico, Cristina, Tomić, Sergej, Tong, Benjamin Chun-Kit, Tong, Chao, Tong, Xin, Tooze, Sharon A, Torgersen, Maria L, Torii, Satoru, Torres-López, Liliana, Torriglia, Alicia, Towers, Christina G, Towns, Roberto, Toyokuni, Shinya, Trajkovic, Vladimir, Tramontano, Donatella, Tran, Quynh-Giao, Travassos, Leonardo H, Trelford, Charles B, Tremel, Shirley, Trougakos, Ioannis P, Tsao, Betty P, Tschan, Mario P, Tse, Hung-Fat, Tse, Tak Fu, Tsugawa, Hitoshi, Tsvetkov, Andrey S, Tumbarello, David A, Tumtas, Yasin, Tuñón, María J, Turcotte, Sandra, Turk, Boris, Turk, Vito, Turner, Bradley J, Tuxworth, Richard I, Tyler, Jessica K, Tyutereva, Elena V, Uchiyama, Yasuo, Ugun-Klusek, Aslihan, Uhlig, Holm H, Ułamek-Kozioł, Marzena, Ulasov, Ilya V, Umekawa, Midori, Ungermann, Christian, Unno, Rei, Urbe, Sylvie, Uribe-Carretero, Elisabet, Üstün, Suayib, Uversky, Vladimir N, Vaccari, Thomas, Vaccaro, Maria I, Vahsen, Björn F, Vakifahmetoglu-Norberg, Helin, Valdor, Rut, Valente, Maria J, Valko, Ayelén, Vallee, Richard B, Valverde, Angela M, Van Den Berghe, Greet, Van Der Veen, Stijn, Van Kaer, Luc, Van Loosdregt, Jorg, Van Wijk, Sjoerd JL, Vandenberghe, Wim, Vanhorebeek, Ilse, Vannier-Santos, Marcos A, Vannini, Nicola, Vanrell, M Cristina, Vantaggiato, Chiara, Varano, Gabriele, Varela-Nieto, Isabel, Varga, Máté, Vasconcelos, M Helena, Vats, Somya, Vavvas, Demetrios G, Vega-Naredo, Ignacio, Vega-Rubin-De-Celis, Silvia, Velasco, Guillermo, Velázquez, Ariadna P, Vellai, Tibor, Vellenga, Edo, Velotti, Francesca, Verdier, Mireille, Verginis, Panayotis, Vergne, Isabelle, Verkade, Paul, Verma, Manish, Verstreken, Patrik, Vervliet, Tim, Vervoorts, Jörg, Vessoni, Alexandre T, Victor, Victor M, Vidal, Michel, Vidoni, Chiara, Vieira, Otilia V, Vierstra, Richard D, Viganó, Sonia, Vihinen, Helena, Vijayan, Vinoy, Vila, Miquel, Vilar, Marçal, Villalba, José M, Villalobo, Antonio, Villarejo-Zori, Beatriz, Villarroya, Francesc, Villarroya, Joan, Vincent, Olivier, Vindis, Cecile, Viret, Christophe, Viscomi, Maria Teresa, Visnjic, Dora, Vitale, Ilio, Vocadlo, David J, Voitsekhovskaja, Olga V, Volonté, Cinzia, Volta, Mattia, Vomero, Marta, Von Haefen, Clarissa, Vooijs, Marc A, Voos, Wolfgang, Vucicevic, Ljubica, Wade-Martins, Richard, Waguri, Satoshi, Waite, Kenrick A, Wakatsuki, Shuji, Walker, David W, Walker, Mark J, Walker, Simon A, Walter, Jochen, Wandosell, Francisco G, Wang, Bo, Wang, Chao-Yung, Wang, Chen, Wang, Chenran, Wang, Chenwei, Wang, Cun-Yu, Wang, Dong, Wang, Fangyang, Wang, Feng, Wang, Fengming, Wang, Guansong, Wang, Han, Wang, Hao, Wang, Hexiang, Wang, Hong-Gang, Wang, Jianrong, Wang, Jigang, Wang, Jiou, Wang, Jundong, Wang, Kui, Wang, Lianrong, Wang, Liming, Wang, Maggie Haitian, Wang, Meiqing, Wang, Nanbu, Wang, Pengwei, Wang, Peipei, Wang, Ping, Wang, Qing Jun, Wang, Qing, Wang, Qing Kenneth, Wang, Qiong A, Wang, Wen-Tao, Wang, Wuyang, Wang, Xinnan, Wang, Xuejun, Wang, Yan, Wang, Yanchang, Wang, Yanzhuang, Wang, Yen-Yun, Wang, Yihua, Wang, Yipeng, Wang, Yu, Wang, Yuqi, Wang, Zhe, Wang, Zhenyu, Wang, Zhouguang, Warnes, Gary, Warnsmann, Verena, Watada, Hirotaka, Watanabe, Eizo, Watchon, Maxinne, Wawrzyńska, Anna, Weaver, Timothy E, Wegrzyn, Grzegorz, Wehman, Ann M, Wei, Huafeng, Wei, Lei, Wei, Taotao, Wei, Yongjie, Weiergräber, Oliver H, Weihl, Conrad C, Weindl, Günther, Weiskirchen, Ralf, Wells, Alan, Wen, Runxia H, Wen, Xin, Werner, Antonia, Weykopf, Beatrice, Wheatley, Sally P, Whitton, J Lindsay, Whitworth, Alexander J, Wiktorska, Katarzyna, Wildenberg, Manon E, Wileman, Tom, Wilkinson, Simon, Willbold, Dieter, Williams, Brett, Williams, Robin SB, Williams, Roger L, Williamson, Peter R, Wilson, Richard A, Winner, Beate, Winsor, Nathaniel J, Witkin, Steven S, Wodrich, Harald, Woehlbier, Ute, Wollert, Thomas, Wong, Esther, Wong, Jack Ho, Wong, Richard W, Wong, Vincent Kam Wai, Wong, W Wei-Lynn, Wu, An-Guo, Wu, Chengbiao, Wu, Jian, Wu, Junfang, Wu, Kenneth K, Wu, Min, Wu, Shan-Ying, Wu, Shengzhou, Wu, Shu-Yan, Wu, Shufang, Wu, William KK, Wu, Xiaohong, Wu, Xiaoqing, Wu, Yao-Wen, Wu, Yihua, Xavier, Ramnik J, Xia, Hongguang, Xia, Lixin, Xia, Zhengyuan, Xiang, Ge, Xiang, Jin, Xiang, Mingliang, Xiang, Wei, Xiao, Bin, Xiao, Guozhi, Xiao, Hengyi, Xiao, Hong-Tao, Xiao, Jian, Xiao, Lan, Xiao, Shi, Xiao, Yin, Xie, Baoming, Xie, Chuan-Ming, Xie, Min, Xie, Yuxiang, Xie, Zhiping, Xie, Zhonglin, Xilouri, Maria, Xu, Congfeng, Xu, En, Xu, Haoxing, Xu, Jing, Xu, JinRong, Xu, Liang, Xu, Wen Wen, Xu, Xiulong, Xue, Yu, Yakhine-Diop, Sokhna MS, Yamaguchi, Masamitsu, Yamaguchi, Osamu, Yamamoto, Ai, Yamashina, Shunhei, Yan, Shengmin, Yan, Shian-Jang, Yan, Zhen, Yanagi, Yasuo, Yang, Chuanbin, Yang, Dun-Sheng, Yang, Huan, Yang, Huang-Tian, Yang, Hui, Yang, Jin-Ming, Yang, Jing, Yang, Jingyu, Yang, Ling, Yang, Liu, Yang, Ming, Yang, Pei-Ming, Yang, Qian, Yang, Seungwon, Yang, Shu, Yang, Shun-Fa, Yang, Wannian, Yang, Wei Yuan, Yang, Xiaoyong, Yang, Xuesong, Yang, Yi, Yang, Ying, Yao, Honghong, Yao, Shenggen, Yao, Xiaoqiang, Yao, Yong-Gang, Yao, Yong-Ming, Yasui, Takahiro, Yazdankhah, Meysam, Yen, Paul M, Yi, Cong, Yin, Xiao-Ming, Yin, Yanhai, Yin, Zhangyuan, Yin, Ziyi, Ying, Meidan, Ying, Zheng, Yip, Calvin K, Yiu, Stephanie Pei Tung, Yoo, Young H, Yoshida, Kiyotsugu, Yoshii, Saori R, Yoshimori, Tamotsu, Yousefi, Bahman, Yu, Boxuan, Yu, Haiyang, Yu, Jun, Yu, Li, Yu, Ming-Lung, Yu, Seong-Woon, Yu, Victor C, Yu, W Haung, Yu, Zhengping, Yu, Zhou, Yuan, Junying, Yuan, Ling-Qing, Yuan, Shilin, Yuan, Shyng-Shiou F, Yuan, Yanggang, Yuan, Zengqiang, Yue, Jianbo, Yue, Zhenyu, Yun, Jeanho, Yung, Raymond L, Zacks, David N, Zaffagnini, Gabriele, Zambelli, Vanessa O, Zanella, Isabella, Zang, Qun S, Zanivan, Sara, Zappavigna, Silvia, Zaragoza, Pilar, Zarbalis, Konstantinos S, Zarebkohan, Amir, Zarrouk, Amira, Zeitlin, Scott O, Zeng, Jialiu, Zeng, Ju-Deng, Žerovnik, Eva, Zhan, Lixuan, Zhang, Bin, Zhang, Donna D, Zhang, Hanlin, Zhang, Hong, Zhang, Honghe, Zhang, Huafeng, Zhang, Huaye, Zhang, Hui, Zhang, Hui-Ling, Zhang, Jianbin, Zhang, Jianhua, Zhang, Jing-Pu, Zhang, Kalin YB, Zhang, Leshuai W, Zhang, Lin, Zhang, Lisheng, Zhang, Lu, Zhang, Luoying, Zhang, Menghuan, Zhang, Peng, Zhang, Sheng, Zhang, Wei, Zhang, Xiangnan, Zhang, Xiao-Wei, Zhang, Xiaolei, Zhang, Xiaoyan, Zhang, Xin, Zhang, Xinxin, Zhang, Xu Dong, Zhang, Yang, Zhang, Yanjin, Zhang, Yi, Zhang, Ying-Dong, Zhang, Yingmei, Zhang, Yuan-Yuan, Zhang, Yuchen, Zhang, Zhe, Zhang, Zhengguang, Zhang, Zhibing, Zhang, Zhihai, Zhang, Zhiyong, Zhang, Zili, Zhao, Haobin, Zhao, Lei, Zhao, Shuang, Zhao, Tongbiao, Zhao, Xiao-Fan, Zhao, Ying, Zhao, Yongchao, Zhao, Yongliang, Zhao, Yuting, Zheng, Guoping, Zheng, Kai, Zheng, Ling, Zheng, Shizhong, Zheng, Xi-Long, Zheng, Yi, Zheng, Zu-Guo, Zhivotovsky, Boris, Zhong, Qing, Zhou, Ao, Zhou, Ben, Zhou, Cefan, Zhou, Gang, Zhou, Hao, Zhou, Hong, Zhou, Hongbo, Zhou, Jie, Zhou, Jing, Zhou, Jiyong, Zhou, Kailiang, Zhou, Rongjia, Zhou, Xu-Jie, Zhou, Yanshuang, Zhou, Yinghong, Zhou, Yubin, Zhou, Zheng-Yu, Zhou, Zhou, Zhu, Binglin, Zhu, Changlian, Zhu, Guo-Qing, Zhu, Haining, Zhu, Hongxin, Zhu, Hua, Zhu, Wei-Guo, Zhu, Yanping, Zhu, Yushan, Zhuang, Haixia, Zhuang, Xiaohong, Zientara-Rytter, Katarzyna, Zimmermann, Christine M, Ziviani, Elena, Zoladek, Teresa, Zong, Wei-Xing, Zorov, Dmitry B, Zorzano, Antonio, Zou, Weiping, Zou, Zhen, Zou, Zhengzhi, Zuryn, Steven, Zwerschke, Werner, Brand-Saberi, Beate, Dong, X Charlie, Kenchappa, Chandra Shekar, Li, Zuguo, Lin, Yong, Oshima, Shigeru, Rong, Yueguang, Sluimer, Judith C, Stallings, Christina L, and Tong, Chun-Kit
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phagophore ,vacuole ,Autophagosome ,neurodegeneration ,Autophagosomes ,Autophagy-Related Proteins ,flux ,macroautophagy ,stress ,LC3 ,lysosome ,Autophagy ,cancer ,Animals ,Humans ,Biological Assay ,Lysosomes ,Biomarkers - Abstract
In 2008, we published the first set of guidelines for standardizing research in autophagy. Since then, this topic has received increasing attention, and many scientists have entered the field. Our knowledge base and relevant new technologies have also been expanding. Thus, it is important to formulate on a regular basis updated guidelines for monitoring autophagy in different organisms. Despite numerous reviews, there continues to be confusion regarding acceptable methods to evaluate autophagy, especially in multicellular eukaryotes. Here, we present a set of guidelines for investigators to select and interpret methods to examine autophagy and related processes, and for reviewers to provide realistic and reasonable critiques of reports that are focused on these processes. These guidelines are not meant to be a dogmatic set of rules, because the appropriateness of any assay largely depends on the question being asked and the system being used. Moreover, no individual assay is perfect for every situation, calling for the use of multiple techniques to properly monitor autophagy in each experimental setting. Finally, several core components of the autophagy machinery have been implicated in distinct autophagic processes (canonical and noncanonical autophagy), implying that genetic approaches to block autophagy should rely on targeting two or more autophagy-related genes that ideally participate in distinct steps of the pathway. Along similar lines, because multiple proteins involved in autophagy also regulate other cellular pathways including apoptosis, not all of them can be used as a specific marker for bona fide autophagic responses. Here, we critically discuss current methods of assessing autophagy and the information they can, or cannot, provide. Our ultimate goal is to encourage intellectual and technical innovation in the field.
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- 2021
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26. Continuous synthesis of <scp>1‐ethoxy</scp> ‐2,3‐difluoro‐4‐iodo‐benzene in a microreactor system and the Gaussian and <scp>computational fluid dynamics</scp> simulations
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Yujun Wang, Siting Xia, Wang Kui, Hongyong Shang, Qiang Chen, and Guangsheng Luo
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Cfd simulation ,Environmental Engineering ,Materials science ,business.industry ,General Chemical Engineering ,Gaussian ,Computational fluid dynamics ,Chemical kinetics ,symbols.namesake ,chemistry.chemical_compound ,chemistry ,Computational chemistry ,Alkoxy group ,symbols ,Microreactor ,Benzene ,business ,Biotechnology - Published
- 2021
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27. Digital Diagnosis and Management of Cholangiocarcinoma
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Shen Feng, Wang Kui, Qifei Zou, Ning Zeng, Xiangcheng Li, and Chihua Fang
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Pancreatic duct ,medicine.medical_specialty ,Common bile duct ,Bile duct ,business.industry ,medicine.disease ,digestive system ,digestive system diseases ,Primary sclerosing cholangitis ,medicine.anatomical_structure ,Common hepatic duct ,medicine ,Cystic duct ,Choledochal cysts ,Radiology ,business ,Intrahepatic Cholangiocarcinoma - Abstract
Cancer of biliary duct can be divided into intrahepatic cholangiocarcinoma (ICC) and extrahepatic cholangiocarcinoma (ECC). ECC is further divided into hilar cholangiocarcinoma and distal cholangiocarcinoma based on the junction point of the cystic duct and common hepatic duct. The main risk factors of cholangiocarcinoma include bile duct stones, HBV, and HCV infection, primary sclerosing cholangitis, liver flukes, and chemical substances. The risk factors of ECC also include biliary and pancreatic duct confluence abnormalities and common bile duct cystic dilatation. According to the general appearance of the tumor, ICC is classified as mass forming, perivascular infiltration, and intravascular growth, while ECC is classified as polyp, nodular, sclerosing, and diffusely infiltrating. Adenocarcinoma is the most common type in both ICC and ECC. Surgical resection is the only radical treatment for cholangiocarcinoma. Radical resection should be actively sought as long as the patient’s systemic condition is tolerable to surgery, and there is no distant metastasis. As digital medical technology has become widely used in liver and gallbladder surgery in our country, three-dimensional visualization technology has brought new ideas for accurate diagnosis, preoperative assessment, choice schemes, and treatment of cholangiocarcinoma. The mode of diagnosis and treatment of hepatobiliary diseases is changing constantly, and the digitization of anatomy, the procedure of diagnosis and the visualization of operation have been realized in hepatobiliary surgery. Digitization has played an active role in the accurate and efficient diagnosis of diseases, the selection of reasonable treatment schemes, the improvement of surgical success rates, and the reduction of surgical risk.
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- 2021
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28. High-Tc superconductivity in clathrate calcium hydride CaH6
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Ma, Liang, Wang, Kui, Xie, Yu, Yang, Xin, Wang, Yingying, Zhou, Mi, Liu, Hanyu, Yu, Xiaohui, Zhao, Yongsheng, Wang, Hongbo, Liu, Guangtao, and Ma, Yanming
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Superconductivity (cond-mat.supr-con) ,Condensed Matter - Superconductivity ,FOS: Physical sciences - Abstract
Recent discovery of superconductive rare earth/actinide superhydrides has ushered in a new era of superconductivity research at high pressures. This distinct type of clathrate metal hydrides was first proposed for alkaline-earth-metal hydride CaH6 that, however, has long eluded experimental synthesis, impeding an understanding of pertinent physics. Here, we report successful synthesis of CaH6 and its measured superconducting critical temperature Tc of 215 K at 172 GPa, which is evidenced by a sharp drop of resistivity to zero and a characteristic decrease of Tc under a magnetic field up to 9 T.An estimate based on the Werthamer-Helfand-Hohenberg model gives a giant zero-temperature upper critical magnetic field of 203 T. These remarkable benchmark superconducting properties place CaH6 among the most outstanding high-Tc superhydrides, marking it as the hitherto only clathrate metal hydride outside the family of rare earth/actinide hydrides. This exceptional case raises great prospects of expanding the extraordinary class of high-Tc superhydrides to a broader variety of compounds that possess more diverse material features and physics characteristics.
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- 2021
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29. Schwarz symmetrizations in parabolic equations on complete manifolds
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Cheng, Haiqing, Ma, Tengfei, and Wang, Kui
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Mathematics - Differential Geometry ,Mathematics - Analysis of PDEs ,Differential Geometry (math.DG) ,FOS: Mathematics ,Mathematics::Differential Geometry ,Mathematics::Geometric Topology ,Mathematics::Symplectic Geometry ,Analysis of PDEs (math.AP) - Abstract
In this article, we prove a sharp estimate for the solutions to parabolic equations on manifolds. Precisely, using symmetrization techniques and isoperimetric inequalities on Riemannian manifold, we obtain a Bandle's comparison on complete noncompact manifolds with nonnegative Ricci curvature and compact manifolds with positive Ricci curvature respectively. Our results generalize Bandle's result [6] to Riemannian setting, and Talenti's comparison for elliptic equation on manifolds by Colladay-Langford-McDonald [12] and Chen-Li [9] to parabolic equations., Comment: All comments are welcome. arXiv admin note: text overlap with arXiv:2110.06814
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30. Eigenvalue Estimates on quaternion-K��hler Manifolds
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Li, Xiaolong and Wang, Kui
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Differential Geometry (math.DG) ,35P15, 53C26 ,FOS: Mathematics ,Mathematics::Differential Geometry ,Mathematics::Spectral Theory ,Spectral Theory (math.SP) ,Analysis of PDEs (math.AP) - Abstract
We prove lower bound for the first closed or Neumann nonzero eigenvalue of the Laplacian on a compact quaternion-K��hler manifold in terms of dimension, diameter, and scalar curvature lower bound. It is derived as large time implication of the modulus of continuity estimates for solutions of the heat equation. We also establish lower bound for the first Dirichlet eigenvalue in terms of geometric data, via a Laplace comparison theorem for the distance to the boundary function., Comments are welcome. arXiv admin note: text overlap with arXiv:2010.12792
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- 2021
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31. Additional file 2 of ESR1 as a recurrence-related gene in intrahepatic cholangiocarcinoma: a weighted gene coexpression network analysis
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Fengwei Li, Qinjunjie Chen, Yang, Yang, Meihui Li, Zhang, Lei, Zhenlin Yan, Junjie Zhang, and Wang, Kui
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Additional file 2: Figure S1. (A) Analysis of the mean connectivity for various soft-thresholding powers (b). Mean connectivity (y-axis) is a strictly decreasing function of the power b (x-axis). (B) Clustering of MEs. MEDissTres was set as 0.24 to merge similar modules. The red and yellow modules were merged into the new red module, which was selected as the hub module in our research. (C) Heatmap of the adjacencies in the hub gene network. (D) PPI network of all genes in the red module. (E) qRT-PCR results for ESR1, A2M, S1PR1, HGF, VDR, RAPGEF4 and STAB2. (F) IHC results for A2M and RAPGEF4 in iCCA tissues and normal liver tissues based on the Human Protein Atlas database. A2M and RAPGEF4 were significantly overexpressed in normal liver tissue vs. iCCA tissue.
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- 2021
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32. Neurally adjusted ventilatory assist after surgical treatment of intracerebral hemorrhage: a randomized crossover study
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Wang Kui, Nianlong Wu, Xinggen Fang, Wang Guiliang, Tao Yu, Zhen Fan, Rongrong Wu, and Lin Yao
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Medicine (General) ,Prospective Clinical Research Report ,Diaphragmatic breathing ,Pressure support ventilation ,Biochemistry ,Positive-Pressure Respiration ,03 medical and health sciences ,neuroventilatory efficiency ,0302 clinical medicine ,R5-920 ,Neurally adjusted ventilatory assist ,Tidal Volume ,Medicine ,Humans ,electrical activity of the diaphragm ,Surgical treatment ,Interactive Ventilatory Support ,Cerebral Hemorrhage ,Intracerebral hemorrhage ,Cross-Over Studies ,pressure support ventilation ,business.industry ,Biochemistry (medical) ,030208 emergency & critical care medicine ,Cell Biology ,General Medicine ,medicine.disease ,neuromechanical efficiency ,Crossover study ,Respiration, Artificial ,diaphragmatic function ,030228 respiratory system ,Anesthesia ,business - Abstract
Objective We assessed the neuromechanical efficiency (NME), neuroventilatory efficiency (NVE), and diaphragmatic function effects between pressure support ventilation (PSV) and neutrally adjusted ventilatory assist (NAVA). Methods Fifteen patients who had undergone surgical treatment of intracerebral hemorrhage were enrolled in this randomized crossover study. The patients were assigned to PSV for the first 24 hours and then to NAVA for the following 24 hours or vice versa. The monitored ventilatory parameters under the two ventilation models were compared. NME, NVE, and diaphragmatic function were compared between the two ventilation models. Results One patient’s illness worsened during the study. The study was stopped for this patient, and intact data were obtained from the other 14 patients and analyzed. The monitored tidal volume was significantly higher with PSV than NAVA (487 [443–615] vs. 440 [400–480] mL, respectively). NME, NVE, diaphragmatic function, and the partial pressures of arterial carbon dioxide and oxygen were not significantly different between the two ventilation models. Conclusion The tidal volume was lower with NAVA than PSV; however, the patients’ selected respiratory pattern during NAVA did not change the NME, NVE, or diaphragmatic function. Clinical trial registration no. ChiCTR1900022861
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- 2020
33. Hydrotreatment of lipid model for diesel-like alkane using nitrogen-doped mesoporous carbon-supported molybdenum carbide
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Junming Xu, Jianchun Jiang, Peng Liu, Jing Li, Haihong Xia, Fei Wang, Junfeng Feng, Feng Long, Ye Jun, Wang Kui, and Qiaolong Zhai
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chemistry.chemical_classification ,Alkane ,Double bond ,Process Chemistry and Technology ,Inorganic chemistry ,Substrate (chemistry) ,chemistry.chemical_element ,02 engineering and technology ,Activation energy ,010402 general chemistry ,021001 nanoscience & nanotechnology ,01 natural sciences ,Catalysis ,0104 chemical sciences ,chemistry.chemical_compound ,Aniline ,chemistry ,0210 nano-technology ,Selectivity ,Carbon ,General Environmental Science - Abstract
The in situ polymerization of aniline as a nitrogen source was adopted to prepare nitrogen-doped mesoporous carbon (NMC), which further supported the molybdenum carbide catalyst for the hydrotreatment of fatty acids. The nitrogen doping drastically enhanced the catalytic performance of Mo2C/N1.0MC-700 with 92.7% conversion and 86.7% selectivity, which are much higher than the values of Mo2C/MC (84.8% and 70.1%, respectively). The kinetic study revealed that the apparent activation energy was reduced greatly after nitrogen doping. In addition, the nitrogen-doped catalyst showed decent stability, and the conversion and selectivity over Mo2C/N1.0MC-700 decreased by 4.4% and 6.9% respectively, after recycling three times. The deactivation mainly resulted from the coke deposition on the surface of catalyst. The high catalytic activity and stability were ascribed to the formation of pyridinic N and pyrrolic N in NMC, which resulted in the high dispersion of Mo, a decrease in the particle size as well as strong interactions between support and active sites. The hydrotreatment conditions of oleic acid were studied, and the optimal reaction conditions were as follows: reaction temperature, 350 °C; initial H2 pressure, 3.0 MPa; n-hexane as solvent. Moreover, the results indicated that a substrate with a saturated carbon double bond and ester group was more easily converted into hydrocarbons.
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- 2019
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34. Shaft capacity of pre-bored grouted planted nodular pile under various overburden pressures in dense sand
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Wang Kui-hua, Gong Xiao-nan, Zhou Jia-Jin, Zhang Rihong, and Yan Tian-Long
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010505 oceanography ,0211 other engineering and technologies ,Ocean Engineering ,02 engineering and technology ,Geotechnical Engineering and Engineering Geology ,Oceanography ,Overburden pressure ,01 natural sciences ,Overburden ,Geotechnical engineering ,Pile ,Geology ,021101 geological & geomatics engineering ,0105 earth and related environmental sciences - Abstract
This paper presents the results of a series of model tests performed to study the shaft capacity of pre-bored grouted planted nodular (PGPN) pile in dense sand. The influence of the vertica...
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- 2019
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35. 基于光照补偿的HSV空间多尺度Retinex图像增强
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王奎 Wang Kui and 黄福珍 Huang Fuzhen
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Electrical and Electronic Engineering ,Atomic and Molecular Physics, and Optics - Published
- 2022
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36. Facile Strategy to Generate Aligned Polymer Nanofibers: Effects on Cell Adhesion
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Wang Kui, Lei Shen, Juan Tao, Jun Xie, Jintao Zhu, and Liping Liu
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chemistry.chemical_classification ,Materials science ,Polymers ,Nanofibers ,02 engineering and technology ,Adhesion ,Polymer ,Fibroblasts ,010402 general chemistry ,021001 nanoscience & nanotechnology ,01 natural sciences ,Electrospinning ,0104 chemical sciences ,Mice ,Membrane ,Chemical engineering ,chemistry ,Nanofiber ,Nano ,Cell Adhesion ,Animals ,General Materials Science ,Fiber ,0210 nano-technology ,Cell adhesion - Abstract
Structure of polymer fiber membranes plays a vital role in controlling cell responses as applied to immobilize targets for specific cell interactions. Electrospinning is a simple and powerful method to prepare polymer fiber membranes with scales from nano- to micrometers. In this report, a facile yet versatile strategy has been developed for fabricating polymer nanofiber membranes with well-aligned structures using a glass sheet between the needle and a static drum as the collector. Effects of solution concentration, polymer molecular weight, applied voltage, and collection distance on the morphologies of the formed fibers were systematically studied. Adhesion of cells (e.g., mouse melanoma cells B16-F10 and fibroblast cells NIH-3T3) on the fiber membrane has been further investigated. Our results show that cell morphologies varied from elongated to spherical on the random fiber membrane when the pore area of membrane decreased. In contrast, on the membrane with aligned morphology, when decreasing the gap width of fiber membrane, cell is found to keep elongated state and spread along the alignment direction. This work provides a facile yet effective strategy to engineer surface structures of the fiber membranes for controlling cell adhesion.
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- 2018
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37. Selective catalytic conversion of waste lignocellulosic biomass for renewable value-added chemicals via directional microwave-assisted liquefaction
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Zhongzhi Yang, Wang Kui, Chung-Yun Hse, Jianchun Jiang, Junming Xu, Junfeng Feng, and Ye Jun
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010405 organic chemistry ,Renewable Energy, Sustainability and the Environment ,food and beverages ,Energy Engineering and Power Technology ,Biomass ,Liquefaction ,Lignocellulosic biomass ,Cellobiose ,010402 general chemistry ,Furfural ,01 natural sciences ,0104 chemical sciences ,Catalysis ,chemistry.chemical_compound ,Fuel Technology ,chemistry ,Chemical engineering ,Yield (chemistry) ,Levulinic acid - Abstract
Selective catalytic conversion of biomass waste for producing methyl levulinate (MLA) via directional microwave-assisted liquefaction was investigated. The goal of the study was to develop a directional liquefaction process using dielectric heating with microwave energy. The methanolysis of biomass into methyl levulinate was studied in the presence of several acid catalysts. The C6 sugar substrates in biomass were successfully converted into methyl levulinate under the optimized conditions (180 °C, 40 min) with a yield of 29.39 wt%. 5-Hydroxymethyl furfural, glucose, fructose, cellobiose, corn starch, and microcrystalline cellulose were selected as models for directional microwave-assisted liquefaction. Therefore, the possible reaction pathway of biomass to methyl levulinate could be investigated. The selective catalytic conversion of biomass was found to be highly efficient for the generation of MLA (reaching a maximum yield of approximately 30 wt%), higher than the levulinic acid yield (14 wt%) in aqueous solution under the same reaction conditions. The results suggested that directional microwave-assisted liquefaction is an effective method that can produce a high value-added fuel additive (methyl levulinate) from lignocellulosic biomass under designated reaction processes.
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- 2018
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38. Identification of grass growth conditions based on sheep grazing acoustic signals
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Yongan Zhang, Wang Kui, Pei Wu, Chuanzhong Xuan, Yanhua Ma, and Ku Bu
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business.industry ,Process (computing) ,Forestry ,Pattern recognition ,Sample (statistics) ,Horticulture ,Convolutional neural network ,Computer Science Applications ,Identification (information) ,Recurrent neural network ,Grazing ,Feature (machine learning) ,Waveform ,Artificial intelligence ,business ,Agronomy and Crop Science ,Mathematics - Abstract
The acoustic signals of sheep grazing carry a wealth of information. To date, the information on grazing behavior and intake in acoustic signals has been thoroughly explored and utilized. However, information on grass growth conditions (grass conditions) has received little attention from scholars, although it is crucial for making rotational grazing decisions. This study tries to efficiently mine and process the grass condition information in acoustic signals to obtain a high-performing recognition model. First, the acoustic signals collected under three grass conditions were divided into many segment samples. Second, six types of formal samples were constructed from every segment sample. Last, the log-Mel features of the six formal samples were separately fed into a convolutional neural network (CNN) model or a recurrent neural network (RNN) model to identify the grass conditions. Before the log-Mel features were fed into the model, two methods of unifying the sample length and multiple specified lengths were used to pre-process the formal samples. The results showed that the combination of the fixed chewing and biting connection (FCB) sample and the CNN model performed the best, with an accuracy of 90.24%. The method of filling or truncating the sample’s waveform tended to be better than scaling the sample’s log-Mel feature when the specified length was longer than 8 s. The different specified lengths had an essential effect on the accuracy of the model with the filling method. The application of this study could provide a data reference for constructing a more rational rotational grazing strategy.
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- 2021
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39. Catalytic Conversion of Bamboo Meal to High-Yield Furfural With Solid Acid Catalyst FePO4 ⋅2H2 O
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Zhou Minghao, Chen Shuigen, Wang Kui, Jiang Jianchun, Junming Xu, and Jun Ye
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Meal ,Bamboo ,010405 organic chemistry ,General Chemistry ,Solid acid ,010402 general chemistry ,Furfural ,01 natural sciences ,0104 chemical sciences ,Catalysis ,chemistry.chemical_compound ,chemistry ,Yield (chemistry) ,Nuclear chemistry - Published
- 2017
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40. Liquid phase in situ hydrodeoxygenation of biomass-derived phenolic compounds to hydrocarbons over bifunctional catalysts
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Wang Kui, Zhongzhi Yang, Chung-Yun Hse, Jianchun Jiang, Junfeng Feng, and Junming Xu
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chemistry.chemical_classification ,Hydrogen ,010405 organic chemistry ,Process Chemistry and Technology ,chemistry.chemical_element ,010402 general chemistry ,01 natural sciences ,Catalysis ,0104 chemical sciences ,Solvent ,chemistry.chemical_compound ,Hydrocarbon ,chemistry ,Organic chemistry ,Methanol ,Selectivity ,Bifunctional ,Hydrodeoxygenation - Abstract
The objective of this study was to find an effective method for converting renewable biomass-derived phenolic compounds into hydrocarbons bio-fuel via in situ catalytic hydrodeoxygenation. The in situ hydrodeoxygenation of biomass-derived phenolic compounds was carried out in methanol-water solvent over bifunctional catalysts of Raney Ni and HZSM-5 or H-Beta. In the in situ hydrodeoxygenation, the hydrogen was donated by aqueous phase reforming of methanol without external hydrogen gas. This reaction pathway for liquid-phase in situ hydrodeoxygenation of phenolic monomers was based on methanol-water as a solvent, stepwise metal-catalyzed hydrogenation, acid-catalyzed dehydration, and metal-catalyzed hydrolysis. The three-step conversion process can be achieved by a one-pot procedure. When HZSM-5 (Si/Al ratio of 25) and Raney Ni were used as the bifunctional catalysts of in situ hydrodeoxygenation, more than 90% conversion of phenolic monomers and dimers, approximately 70–90% selectivity of cyclohexanes and hydrocarbons could be obtained at 220 °C with a reaction time of 7 h. The bifunctional catalysts combined Raney Ni with HZSM-5 can achieve the aqueous-phase reforming of methanol, which coupled with the in situ hydrodeoxygenation of phenolic compounds. Therefore, this in situ hydrodeoxygenation process with bifunctional catalysts provided an efficient route for upgrading bio-oil containing large amounts of phenolic compounds into renewable hydrocarbon products.
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- 2017
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41. In situ catalytic hydrogenation of model compounds and biomass-derived phenolic compounds for bio-oil upgrading
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Qiuli Su, Wang Kui, Chung-Yun Hse, Jianchun Jiang, Zhongzhi Yang, Junming Xu, and Junfeng Feng
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chemistry.chemical_classification ,Hydrogen ,Renewable Energy, Sustainability and the Environment ,Chemistry ,Cyclohexanol ,Lignocellulosic biomass ,chemistry.chemical_element ,02 engineering and technology ,010402 general chemistry ,021001 nanoscience & nanotechnology ,01 natural sciences ,0104 chemical sciences ,chemistry.chemical_compound ,Hydrocarbon ,Biofuel ,Lignin ,Organic chemistry ,Guaiacol ,Methanol ,0210 nano-technology - Abstract
The renewable phenolic compounds produced by directional liquefaction of biomass are a mixture of complete fragments decomposed from native lignin. These compounds are unstable and difficult to use directly as biofuel. Here, we report an efficient in situ catalytic hydrogenation method that can convert phenolic compounds into saturated cyclohexanes. The process has high potential for production of hydrocarbon transportation fuels. In the in situ catalytic hydrogenation system, phenolic compounds were converted into cyclohexanol derivatives (that can be efficiently converted into cyclohexane-hydrocarbon fuels by acid-catalyzed dehydration) with a conversion yield 98.22 wt% under mild conditions (220 °C for 7 h with Raney Ni). The in situ catalytic hydrogenation of phenolic compounds, using methanol as a liquid hydrogen donor, was found to be superior to traditional hydrogenation using external hydrogen gas. The in situ hydrogenation of phenolic compounds was coupled with aqueous-phase reforming of methanol. The conversion of guaiacol and target product yields were significantly higher than by traditional hydrogenation.
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- 2017
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42. Surface modification of sepiolite: effects on thermomechanical properties of PP/PA6 blends
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Wei Yan, Tu Chunyun, Weijiang Huang, Tiantian Li, Wang Kui, Tian Qin, Xianshun Wu, and Jie Xie
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Polypropylene ,Thermogravimetric analysis ,Materials science ,Nanocomposite ,Polymers and Plastics ,Scanning electron microscope ,Sepiolite ,Organic Chemistry ,02 engineering and technology ,010402 general chemistry ,021001 nanoscience & nanotechnology ,01 natural sciences ,Silane ,0104 chemical sciences ,chemistry.chemical_compound ,Differential scanning calorimetry ,chemistry ,Materials Chemistry ,Surface modification ,Composite material ,0210 nano-technology - Abstract
In the current work, organosepiolite (O-Sep) was prepared via modification of sepiolite (Sep) with silane coupler γ-methacryloxypropyltrimethoxysilane (CG-570) and polypropylene (PP)/ polyamide 6 (PA6) blends were introduced to investigate the effect on thermomechanical properties of polymer-based nanocomposites. Scanning electron microscopy (SEM), transmission electron microscopy (TEM), thermogravimetric analysis (TGA), differential scanning calorimetry (DSC), and rotational rheometer were employed to characterize the morphology and thermomechanical properties of materials. The results show that O-Sep improved the dispersion of PA6 in the PP matrix and enhanced both the mechanical behavior and thermal properties of the PP/PA6/O-Sep nanocomposites.
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- 2020
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43. On the second Robin eigenvalue of the Laplacian
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Li, Xiaolong, Wang, Kui, and Wu, Haotian
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Mathematics - Differential Geometry ,Mathematics - Spectral Theory ,Mathematics - Analysis of PDEs ,Differential Geometry (math.DG) ,35P15, 49R05, 58C40, 58J50 ,FOS: Mathematics ,Mathematics::Differential Geometry ,Mathematics::Spectral Theory ,Computer Science::Operating Systems ,Spectral Theory (math.SP) ,Analysis of PDEs (math.AP) - Abstract
We study the Robin eigenvalue problem for the Laplace-Beltrami operator on Riemannian manifolds. Our first result is a comparison theorem for the second Robin eigenvalue on geodesic balls in manifolds whose sectional curvatures are bounded from above. Our second result asserts that geodesic balls in nonpositively curved space forms maximize the second Robin eigenvalue among bounded domains of the same volume., Comment: Comments are welcome
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- 2020
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44. Additional file 1 of External validation of three atherosclerotic cardiovascular disease risk equations in rural areas of Xinjiang, China
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Yunxing Jiang, Rulin Ma, Guo, Heng, Xianghui Zhang, Xinping Wang, Wang, Kui, Yunhua Hu, Mulatibieke Keerman, Yizhong Yan, Jiaolong Ma, Yanpeng Song, Jingyu Zhang, He, Jia, and Shuxia Guo
- Abstract
Additional file 1 Table S1. Parameters of three risk equations used in this study for men and women. Table S2. Summary of risk factors and outcome of three risk equations used in this external validation study. Table S3. Net benefit analysis for preventing ASCVD at different thresholds of Pt after recalibration. Table S4. Net benefit analysis for preventing ASCVD at different thresholds of Pt before recalibration. Table S5. Comparisons of baseline characteristics between three risk equations and the study population.
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- 2020
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45. On a class of quasilinear operators on smooth metric measure spaces
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Li, Xiaolong, Tu, Yucheng, and Wang, Kui
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Mathematics - Differential Geometry ,Mathematics - Analysis of PDEs ,Differential Geometry (math.DG) ,Mathematics::Analysis of PDEs ,FOS: Mathematics ,35K55, 58C40, 35P15, 58J50 ,Analysis of PDEs (math.AP) - Abstract
We derive sharp estimates on the modulus of continuity for solutions of a large class of quasilinear isotropic parabolic equations on smooth metric measure spaces (with Dirichlet or Neumann boundary condition in case the boundary is non-empty). We also derive optimal lower bounds for the first Dirichlet eigenvalue of a class of homogeneous quasilinear operators, which include non-variational operators. The main feature is that this class of operators have corresponding one-dimensional operators, which allow sharp comparisons with solutions of one-dimensional equations., Comment: Comments are welcome. 36 pages
- Published
- 2020
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46. Supplemental Material, Appendix - Validation of the Chinese Version of the Body Image Concern Inventory
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Wang, Kui, Yu, Xin-yang, Yu, Chao-ran, Liu, Ya-fei, Chu, Min-yi, Zhang, Rui-ting, Liang, Rui, Chen, Jue, Littleton, Heather L., Shum, David H. K., and Chan, Raymond C. K.
- Subjects
111099 Nursing not elsewhere classified ,111708 Health and Community Services ,111799 Public Health and Health Services not elsewhere classified ,160807 Sociological Methodology and Research Methods ,FOS: Health sciences ,FOS: Sociology - Abstract
Supplemental Material, Appendix for Validation of the Chinese Version of the Body Image Concern Inventory by Kui Wang, Xin-yang Yu, Chao-ran Yu, Ya-fei Liu, Min-yi Chu, Rui-ting Zhang, Rui Liang, Jue Chen, Heather L. Littleton, David H. K. Shum and Raymond C. K. Chan in Evaluation & the Health Professions
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- 2020
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47. Supplemental Material, Appendix_2 - Development and Validation of a BMI-Based Figure Rating Scale for Chinese Adolescents
- Author
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Yu, Chao-Ran, Yu, Xin-Yang, Fan, Zhi-Tao, Wang, Kui, and Littleton, Heather L.
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111099 Nursing not elsewhere classified ,111708 Health and Community Services ,111799 Public Health and Health Services not elsewhere classified ,160807 Sociological Methodology and Research Methods ,FOS: Health sciences ,FOS: Sociology - Abstract
Supplemental Material, Appendix_2 for Development and Validation of a BMI-Based Figure Rating Scale for Chinese Adolescents by Chao-Ran Yu, Xin-Yang Yu, Zhi-Tao Fan, Kui Wang and Heather L. Littleton in Evaluation & the Health Professions
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- 2020
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48. Supplemental Material, Apendix_1 - Development and Validation of a BMI-Based Figure Rating Scale for Chinese Adolescents
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Yu, Chao-Ran, Yu, Xin-Yang, Fan, Zhi-Tao, Wang, Kui, and Littleton, Heather L.
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111099 Nursing not elsewhere classified ,111708 Health and Community Services ,111799 Public Health and Health Services not elsewhere classified ,160807 Sociological Methodology and Research Methods ,FOS: Health sciences ,FOS: Sociology - Abstract
Supplemental Material, Apendix_1 for Development and Validation of a BMI-Based Figure Rating Scale for Chinese Adolescents by Chao-Ran Yu, Xin-Yang Yu, Zhi-Tao Fan, Kui Wang and Heather L. Littleton in Evaluation & the Health Professions
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- 2020
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49. Additional file 2 of External validation of three atherosclerotic cardiovascular disease risk equations in rural areas of Xinjiang, China
- Author
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Yunxing Jiang, Rulin Ma, Guo, Heng, Xianghui Zhang, Xinping Wang, Wang, Kui, Yunhua Hu, Mulatibieke Keerman, Yizhong Yan, Jiaolong Ma, Yanpeng Song, Jingyu Zhang, He, Jia, and Shuxia Guo
- Abstract
Additional file 2 Fig. S1. Distribution of risk estimated from the PCE, PAR, and FRS among men and women.
- Published
- 2020
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50. Lower bounds for the first eigenvalue of the Laplacian on K��hler manifolds
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Li, Xiaolong and Wang, Kui
- Subjects
35P15, 53C55 ,Differential Geometry (math.DG) ,Mathematics::Complex Variables ,FOS: Mathematics ,Mathematics::Differential Geometry ,Mathematics::Spectral Theory ,Mathematics::Symplectic Geometry ,Spectral Theory (math.SP) ,Analysis of PDEs (math.AP) - Abstract
We establish lower bound for the first nonzero eigenvalue of the Laplacian on a closed K��hler manifold in terms of dimension, diameter, and lower bounds of holomorphic sectional curvature and orthogonal Ricci curvature. On compact K��hler manifolds with boundary, we prove lower bounds for the first nonzero Neumann or Dirichlet eigenvalue in terms of geometric data. Our results are K��hler analogues of well-known results for Riemannian manifolds., Comments are welcome
- Published
- 2020
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