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1. Active transcription and epigenetic reactions synergistically regulate meso-scale genomic organization

2. Local volume concentration, packing domains, and scaling properties of chromatin

3. Early screening of colorectal cancer using feature engineering with artificial intelligence-enhanced analysis of nanoscale chromatin modifications

4. Depletion of lamins B1 and B2 promotes chromatin mobility and induces differential gene expression by a mesoscale-motion-dependent mechanism

6. Early detection of lung cancer using artificial intelligence-enhanced optical nanosensing of chromatin alterations in field carcinogenesis

7. Formamide denaturation of double-stranded DNA for fluorescence in situ hybridization (FISH) distorts nanoscale chromatin structure.

8. Differentiation-dependent chromosomal organization changes in normal myogenic cells are absent in rhabdomyosarcoma cells

10. Analysis of three-dimensional chromatin packing domains by chromatin scanning transmission electron microscopy (ChromSTEM)

11. Lipid exposure activates gene expression changes associated with estrogen receptor negative breast cancer

12. Author Correction: Lipid exposure activates gene expression changes associated with estrogen receptor negative breast cancer

13. Chromatin as self-returning walks: From population to single cell and back

14. Uncovering the role of Symbiodiniaceae assemblage composition and abundance in coral bleaching response by minimizing sampling and evolutionary biases

16. Atomic Force Microscopy Detects the Difference in Cancer Cells of Different Neoplastic Aggressiveness via Machine Learning

17. A Phylogeny-Informed Analysis of the Global Coral-Symbiodiniaceae Interaction Network Reveals that Traits Correlated with Thermal Bleaching Are Specific to Symbiont Transmission Mode

18. Multimodal interference-based imaging of nanoscale structure and macromolecular motion uncovers UV induced cellular paroxysm

19. Early increase in blood supply (EIBS) is associated with tumor risk in the Azoxymethane model of colon cancer

20. Correlating colorectal cancer risk with field carcinogenesis progression using partial wave spectroscopic microscopy

21. Single Nucleotide Polymorphism Facilitated Down-Regulation of the Cohesin Stromal Antigen-1: Implications for Colorectal Cancer Racial Disparities

22. Preservation of cellular nano-architecture by the process of chemical fixation for nanopathology.

23. Relating Coral Skeletal Structures at Different Length Scales to Growth, Light Availability to Symbiodinium, and Thermal Bleaching

24. Super-resolution spectroscopic microscopy via photon localization

26. Biophotonic detection of high order chromatin alterations in field carcinogenesis predicts risk of future hepatocellular carcinoma: A pilot study.

27. Nanocytological field carcinogenesis detection to mitigate overdiagnosis of prostate cancer: a proof of concept study.

28. Buccal spectral markers for lung cancer risk stratification.

29. Biological mechanisms underlying structural changes induced by colorectal field carcinogenesis measured with low-coherence enhanced backscattering (LEBS) spectroscopy.

30. HDAC up-regulation in early colon field carcinogenesis is involved in cell tumorigenicity through regulation of chromatin structure.

31. Modulation of light-enhancement to symbiotic algae by light-scattering in corals and evolutionary trends in bleaching.

32. Dysregulation of microRNAs in colonic field carcinogenesis: implications for screening.

34. Active Transcription and Epigenetic Reactions Synergistically Regulate Meso-Scale Genomic Organization

37. Supplementary Methods, Figure Legend from Optical Detection of Buccal Epithelial Nanoarchitectural Alterations in Patients Harboring Lung Cancer: Implications for Screening

41. Data from Optical Detection of Buccal Epithelial Nanoarchitectural Alterations in Patients Harboring Lung Cancer: Implications for Screening

42. Supplementary Figure 1 from Optical Detection of Buccal Epithelial Nanoarchitectural Alterations in Patients Harboring Lung Cancer: Implications for Screening

43. Supplementary Figures S1-S6 from Enhanced Survival with Implantable Scaffolds That Capture Metastatic Breast Cancer Cells In Vivo

44. Data from Enhanced Survival with Implantable Scaffolds That Capture Metastatic Breast Cancer Cells In Vivo

45. H3.1Cys96oxidation by mitochondrial ROS promotes chromatin remodeling, breast cancer progression to metastasis and multi-drug resistance

48. Abstract A006: Chromatin remodeling as a potential epigenetic mechanism of tolerance to KRAS loss

50. Abstract PS17-40: Fatty acid metabolism at the connection of histone methylation and mammary cell plasticity

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