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4. Targeted Degradation of CTCF Decouples Local Insulation of Chromosome Domains from Genomic Compartmentalization

6. Pairtools: From sequencing data to chromosome contacts.

7. Cooltools: Enabling high-resolution Hi-C analysis in Python.

8. A pathway for mitotic chromosome formation

9. Bioframe: operations on genomic intervals in Pandas dataframes.

13. Two independent modes of chromatin organization revealed by cohesin removal

14. Pairtools: from sequencing data to chromosome contacts

15. Bioframe: Operating on Genomic Interval Dataframes

17. Bioframe: Operating on Genomic Interval Dataframes

20. The genome-wide multi-layered architecture of chromosome pairing in early Drosophila embryos

21. Two independent modes of chromatin organization revealed by cohesin removal

22. A pathway for mitotic chromosome formation

23. Targeted Degradation of CTCF Decouples Local Insulation of Chromosome Domains from Genomic Compartmentalization

24. Emerging Evidence of Chromosome Folding by Loop Extrusion

25. Highly structured homolog pairing reflects functional organization of the Drosophila genome

27. Sister-chromatid-sensitive Hi-C reveals the conformation of replicated human chromosomes

28. On the utility of predictive chromatography to complement mass spectrometry based intact protein identification

29. SMC complexes differentially compact mitotic chromosomes according to genomic context

30. The genome-wide, multi-layered architecture of chromosome pairing in earlyDrosophilaembryos

34. Chromosome Compaction by Active Loop Extrusion

35. Hematopoietic Stem Cells Are the Major Source of Multilineage Hematopoiesis in Adult Animals

42. Cohesin dependent compaction of mitotic chromosomes

44. Formation of Chromosomal Domains by Loop Extrusion

45. Compaction and segregation of sister chromatids via active loop extrusion

47. Hematopoietic Stem Cells Are the Major Source of Multilineage Hematopoiesis in Adult Animals

48. Micro-C XL

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