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1. Correlative single molecule lattice light sheet imaging reveals the dynamic relationship between nucleosomes and the local chromatin environment

2. A quantitative analysis of various patterns applied in lattice light sheet microscopy

4. A multi-functional microfluidic device compatible with widefield and light sheet microscopy

5. Smart Lattice Light Sheet Microscopy for imaging rare and complex cellular events

6. A Photopolymerized Hydrogel System with Dual Stiffness Gradients Reveals Distinct Actomyosin-Based Mechano-Responses in Fibroblast Durotaxis

7. Patient-derived extracellular matrix demonstrates role of COL3A1 in blood vessel mechanics

8. Phase separation drives aberrant chromatin looping and cancer development

10. Zyxin and non-muscle myosin are required for single fibroblast durotaxis, but Rho-kinase activity and the Arp2/3 complex are dispensable

11. Superresolution microscopy reveals actomyosin dynamics in medioapical arrays

12. Real-time imaging of Huntingtin aggregates diverting target search and gene transcription

13. 3D ATAC-PALM: super-resolution imaging of the accessible genome

14. Coro1B and Coro1C regulate lamellipodia dynamics and cell motility by tuning branched actin turnover

15. Software for lattice light-sheet imaging of FRET biosensors, illustrated with a new Rap1 biosensor

16. High-resolution imaging reveals how the spindle midzone impacts chromosome movement

17. Augmin accumulation on long-lived microtubules drives amplification and kinetochore-directed growth

18. 3D imaging of Sox2 enhancer clusters in embryonic stem cells

19. u-track 3D: measuring and interrogating dense particle dynamics in three dimensions

20. APC-mutant cells exploit compensatory chromosome alterations to restore tumour cell fitness

21. Publisher Correction: Deep learning enables fast and dense single-molecule localization with high accuracy

22. Super-resolution Imaging Reveals 3D Structure and Organizing Mechanism of Accessible Chromatin

23. High-density three-dimensional localization microscopy across large volumes

24. Augmin-mediated amplification of long-lived spindle microtubules directs plus-ends to kinetochores

25. Asymmetric formation of coated pits on dorsal and ventral surfaces at the leading edges of motile cells and on protrusions of immobile cells

26. Improving probes for super-resolution

27. Degradation-mediated cellular traction directs stem cell fate in covalently crosslinked three-dimensional hydrogels

28. Applying systems-level spectral imaging and analysis to reveal the organelle interactome

30. Real-time imaging of Huntingtin aggregates diverting target search and gene transcription

31. Flagellar membrane fusion and protein exchange in trypanosomes; a new form of cell-cell communication?

32. Increased spatiotemporal resolution reveals highly dynamic dense tubular matrices in the peripheral ER

33. Multidimensional traction force microscopy reveals out-of-plane rotational moments about focal adhesions

38. Lattice Light Sheet Microscopy: Imaging Molecules to Embryos at High Spatiotemporal Resolution

39. Microfabrication of a platform to measure and manipulate the mechanics of engineered microtissues

40. Microfabrication of a Platform to Measure and Manipulate the Mechanics of Engineered Microtissues

41. Single-molecule dynamics of enhanceosome assembly in embryonic stem cells

42. Carbofluoresceins and carborhodamines as scaffolds for high-contrast fluorogenic probes

43. Development and characterization of a 3D multicell microtissue culture model of airway smooth muscle

44. Stem Cell Fate Within 3D Hydrogels is Mediated by Network Structure-Dependent Traction Generation

45. A Microfabricated Platform to Measure and Manipulate the Mechanics of Engineered Cardiac Microtissues

46. Diffusion of MMPs on the surface of collagen fibrils: the mobile cell surface-collagen substratum interface

47. Measurement of mechanical tractions exerted by cells in three-dimensional matrices

48. Bioactive Hydrogels Made from Step-Growth Derived PEG-Peptide Macromers

50. Microfabricated tissue gauges to measure and manipulate forces from 3D microtissues

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