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1. Direct observation of a crescent-shape chromosome in expanded Bacillus subtilis cells

2. Correction to: Direct observation of a crescent-shape chromosome in expanded Bacillus subtilis cells (Nature Communications, (2024), 15, 1, (2737), 10.1038/s41467-024-47094-x)

3. CTCF is a DNA-tension-dependent barrier to cohesin-mediated loop extrusion

4. MukBEF-dependent chromosomal organization in widened Escherichia coli

5. Directing Min protein patterns with advective bulk flow

6. Condensin extrudes DNA loops in steps up to hundreds of base pairs that are generated by ATP binding events

7. Quantitative analysis of surface wave patterns of Min proteins

8. Bridging scales in a multiscale pattern-forming system

9. Quantitative analysis of surface wave patterns of Min proteins

10. Condensin extrudes DNA loops in steps up to hundreds of base pairs that are generated by ATP binding events

11. Bulk-surface coupling identifies the mechanistic connection between Min-protein patterns in vivo and in vitro

12. AutoStepfinder: A fast and automated step detection method for single-molecule analysis

13. Bulk-surface coupling identifies the mechanistic connection between Min-protein patterns in vivo and in vitro

14. AutoStepfinder: A fast and automated step detection method for single-molecule analysis

15. DNA-loop extruding condensin complexes can traverse one another

16. Direct observation of independently moving replisomes in Escherichia coli

17. DNA-loop extruding condensin complexes can traverse one another

18. Direct observation of independently moving replisomes in Escherichia coli

19. Direct imaging of the circular chromosome in a live bacterium

20. Direct imaging of the circular chromosome in a live bacterium

21. Mechanical Division of Cell-Sized Liposomes

22. Real-time detection of condensin-driven DNA compaction reveals a multistep binding mechanism

23. Real-time detection of condensin-driven DNA compaction reveals a multistep binding mechanism

24. The progression of replication forks at natural replication barriers in live bacteria

25. The progression of replication forks at natural replication barriers in live bacteria

26. Slow unloading leads to DNA-bound ?2-sliding clamp accumulation in live Escherichia coli cells

27. Slow unloading leads to DNA-bound ?2-sliding clamp accumulation in live Escherichia coli cells

28. Electron beam fabrication of a microfluidic device for studying submicron-scale bacteria

29. Electron beam fabrication of a microfluidic device for studying submicron-scale bacteria

30. Non-Bias-Limited Tracking of Spherical Particles, Enabling Nanometer Resolution at Low Magnification

31. Non-Bias-Limited Tracking of Spherical Particles, Enabling Nanometer Resolution at Low Magnification

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