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4. The interplay between phase-separation and gene-enhancer communication: a theoretical study

5. CTCF mediates dosage- and sequence-context-dependent transcriptional insulation by forming local chromatin domains

10. Analysis of Genome Architecture Mapping Data with a Machine Learning and Polymer-Physics-Based Tool

11. Dynamic 3D chromatin architecture contributes to enhancer specificity and limb morphogenesis

12. A single dose of cocaine rewires the 3D genome structure of midbrain dopamine neurons

13. Cell-type specialization is encoded by specific chromatin topologies

15. Understanding Chromatin Structure: Efficient Computational Implementation of Polymer Physics Models

33. Repression and 3D-restructuring resolves regulatory conflicts in evolutionarily rearranged genomes

34. Repression and 3D-restructuring resolves regulatory conflicts in evolutionarily rearranged genomes

36. Further Delineation of Duplications of ARX Locus Detected in Male Patients with Varying Degrees of Intellectual Disability

40. Additional file 6 of Hmga2 protein loss alters nuclear envelope and 3D chromatin structure

42. Additional file 7 of Hmga2 protein loss alters nuclear envelope and 3D chromatin structure

43. Additional file 4 of Hmga2 protein loss alters nuclear envelope and 3D chromatin structure

44. Additional file 8 of Hmga2 protein loss alters nuclear envelope and 3D chromatin structure

45. Additional file 1 of Hmga2 protein loss alters nuclear envelope and 3D chromatin structure

46. Additional file 5 of Hmga2 protein loss alters nuclear envelope and 3D chromatin structure

48. Ethics and Therapeutics: The Treatment of Victims of Child Sexual Abuse.

50. Promoter repression and 3D-restructuring resolves divergent developmental gene expression in TADs

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