1,031 results on '"Nagase, Takahide"'
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2. Readmissions and costs in cadaveric and living-donor lobar lung transplantation: Analysis using a national database
3. Hospital volume and outcomes following bronchoscopy in patients with interstitial lung disease: A retrospective observational study using a national inpatient database in Japan
4. A Japanese herbal medicine (kampo), hochuekkito (TJ-41), has anti-inflammatory effects on the chronic obstructive pulmonary disease mouse model
5. Lysophosphatidylcholine Acyltransferase 1 Deficiency Promotes Pulmonary Emphysema via Apoptosis of Alveolar Epithelial Cells
6. Leptin-producing monocytes in the airway submucosa may contribute to asthma pathogenesis
7. Antiemetic Effect of Rikkunshito, a Japanese Kampo Herbal Medicine, on Cisplatin-induced Nausea and Vomiting: A Nationwide Database Study in Japan
8. Relationship between serum IgA levels and low percentage forced expiratory volume in the first second in asthma
9. Recombinant human soluble thrombomodulin for acute exacerbation of idiopathic pulmonary fibrosis: a nationwide observational study
10. Renal-limited ANCA-associated vasculitis during erlotinib treatment for lung carcinoma
11. Evaluation of tuberculosis diagnostic biomarkers in immunocompromised hosts based on cytokine levels in QuantiFERON-TB Gold Plus
12. Evaluation of cytokine levels in response to mitogen among HIV-1-infected blood cells and their relationships to the number of T cells
13. Lower dose of ethambutol may reduce ocular toxicity without radiological deterioration for Mycobacterium avium complex pulmonary disease
14. Monomeric IgA promotes cytokine production, proliferation and migration by human airway smooth muscle cells
15. Low Serum IL-18 Levels May Predict the Effectiveness of Dupilumab in Severe Asthma
16. Supplementary Table 8 from Distinct microRNA Signature and Suppression of ZFP36L1 Define ASCL1-Positive Lung Adenocarcinoma
17. Supplementary Figure 2 from Distinct microRNA Signature and Suppression of ZFP36L1 Define ASCL1-Positive Lung Adenocarcinoma
18. Data from Distinct microRNA Signature and Suppression of ZFP36L1 Define ASCL1-Positive Lung Adenocarcinoma
19. Supplementary Table 9 from Distinct microRNA Signature and Suppression of ZFP36L1 Define ASCL1-Positive Lung Adenocarcinoma
20. Supplementary Table 4 from Distinct microRNA Signature and Suppression of ZFP36L1 Define ASCL1-Positive Lung Adenocarcinoma
21. Supplementary Figure 6 from Distinct microRNA Signature and Suppression of ZFP36L1 Define ASCL1-Positive Lung Adenocarcinoma
22. Supplementary Figure 4 from Distinct microRNA Signature and Suppression of ZFP36L1 Define ASCL1-Positive Lung Adenocarcinoma
23. Supplementary Table 5 from Distinct microRNA Signature and Suppression of ZFP36L1 Define ASCL1-Positive Lung Adenocarcinoma
24. Supplementary Figure Legends from Distinct microRNA Signature and Suppression of ZFP36L1 Define ASCL1-Positive Lung Adenocarcinoma
25. Supplementary Figure 5 from Distinct microRNA Signature and Suppression of ZFP36L1 Define ASCL1-Positive Lung Adenocarcinoma
26. Supplementary Table 6 from Distinct microRNA Signature and Suppression of ZFP36L1 Define ASCL1-Positive Lung Adenocarcinoma
27. Supplementary Table 7 from Distinct microRNA Signature and Suppression of ZFP36L1 Define ASCL1-Positive Lung Adenocarcinoma
28. Supplementary Figure 1 from Distinct microRNA Signature and Suppression of ZFP36L1 Define ASCL1-Positive Lung Adenocarcinoma
29. Supplementary Figure 7 from Distinct microRNA Signature and Suppression of ZFP36L1 Define ASCL1-Positive Lung Adenocarcinoma
30. Supplementary Table 3 from Distinct microRNA Signature and Suppression of ZFP36L1 Define ASCL1-Positive Lung Adenocarcinoma
31. Supplementary Table 1 from Distinct microRNA Signature and Suppression of ZFP36L1 Define ASCL1-Positive Lung Adenocarcinoma
32. Supplementary Table 2 from Distinct microRNA Signature and Suppression of ZFP36L1 Define ASCL1-Positive Lung Adenocarcinoma
33. Supplementary Figure 3 from Distinct microRNA Signature and Suppression of ZFP36L1 Define ASCL1-Positive Lung Adenocarcinoma
34. Standardized reporting systems of chest computed tomography in a population with low coronavirus disease 2019 prevalence: A retrospective comparative study
35. Diagnostic prediction of COVID-19 based on clinical and radiological findings in a relatively low COVID-19 prevalence area
36. Anti-Inflammatory Effects of Japanese Herbal Medicine Hochuekkito in a Mouse Model of Acute Exacerbation of Chronic Obstructive Pulmonary Disease.
37. Factors affecting in-hospital mortality of non-tuberculous mycobacterial pulmonary disease
38. TGF-β-mediated epithelial–mesenchymal transition and tumor-promoting effects in CMT64 cells are reflected in the transcriptomic signature of human lung adenocarcinoma
39. Immune checkpoint inhibitor combination therapies very frequently induce secondary adrenal insufficiency
40. In-hospital mortality associated with community-acquired pneumonia due to methicillin-resistant Staphylococcus aureus: a matched-pair cohort study
41. Measurement of chest wall motion using a motion capture system with the one-pitch phase analysis method
42. Distinct microRNA Signature and Suppression of ZFP36L1 Define ASCL1-Positive Lung Adenocarcinoma
43. Effectiveness and safety of the co‐administration of Yokukan‐San (Japanese herbal medicine) with antipsychotics in hospitalized older patients with pneumonia
44. Putative Bidirectionality of Chronic Obstructive Pulmonary Disease and Periodontal Disease: A Review of the Literature
45. Leptin enhances cytokine/chemokine production by normal lung fibroblasts by binding to leptin receptor
46. Polysomnographic features of low arousal threshold in overlap syndrome involving obstructive sleep apnea and chronic obstructive pulmonary disease
47. CISH is a negative regulator of IL-13-induced CCL26 production in lung fibroblasts
48. An Integrative Analysis of Transcriptome and Epigenome Features of ASCL1–Positive Lung Adenocarcinomas
49. Influence of Parkinsonism on outcomes of elderly pneumonia patients
50. The Link between Periodontal Disease and Asthma: How Do These Two Diseases Affect Each Other?
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