289 results on '"Weihs, Daphne"'
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2. Physical Confinement and Cell Proximity Increase Cell Migration Rates and Invasiveness: A Mathematical Model of Cancer Cell Invasion through Flexible Channels
3. Do Cancer Cells Collaborate During Metastasis?
4. Do Cancer Cells Collaborate During Metastasis?
5. A Formalism for Modelling Traction forces and Cell Shape Evolution during Cell Migration in Various Biomedical Processes
6. Computational modeling reveals a vital role for proximity-driven additive and synergistic cell-cell interactions in increasing cancer invasiveness
7. Mechanical interactions of invasive cancer cells through their substrate evolve from additive to synergistic
8. Rapid, quantitative prediction of tumor invasiveness in non-melanoma skin cancers using mechanobiology-based assay
9. Machine-Learning Provides Patient-Specific Prediction of Metastatic Risk Based on Innovative, Mechanobiology Assay
10. Modeling force application configurations and morphologies required for cancer cell invasion
11. Actin as a Target to Reduce Cell Invasiveness in Initial Stages of Metastasis
12. Two- and three-dimensional de-drifting algorithms for fiducially marked image stacks
13. Breast cancer stem cells: mechanobiology reveals highly invasive cancer cell subpopulations
14. Effect of Natural Honey Treatment and External Stretching on Kinematics of Cell Migration During Gap Closure
15. Proximity of Metastatic Cells Strengthens the Mechanical Interaction with Their Environment
16. Micropatterned topographies reveal measurable differences between cancer and benign cells
17. Finite element analysis reveals an important role for cell morphology in response to mechanical compression
18. Computational modeling of therapy on pancreatic cancer in its early stages
19. Computational Cell-Based Modeling and Visualization of Cancer Development and Progression
20. Traction Force Microscopy in Differentiating Cells
21. Non-damaging stretching combined with sodium pyruvate supplement accelerate migration of fibroblasts and myoblasts during gap closure
22. The mechanobiology of adipocytes in the context of diabetes
23. Contributors
24. Mechanobiological cell adaptations to changing microenvironments determine cancer invasiveness: Experimentally validated finite element modeling
25. Contributors
26. Bioengineering studies of cell migration in wound research
27. A phenomenological model for cell and nucleus deformation during cancer metastasis
28. A model for cell migration in non-isotropic fibrin networks with an application to pancreatic tumor islets
29. Cytoskeleton and plasma-membrane damage resulting from exposure to sustained deformations: A review of the mechanobiology of chronic wounds
30. Asymmetry in traction forces produced by migrating preadipocytes is bounded to 33%
31. Printable low-cost, sustained and dynamic cell stretching apparatus
32. Mechanical cytoprotection: A review of cytoskeleton-protection approaches for cells
33. Traction Force Microscopy in Differentiating Cells
34. Data from T Cells Promote Metastasis by Regulating Extracellular Matrix Remodeling following Chemotherapy
35. Supplementary Data from T Cells Promote Metastasis by Regulating Extracellular Matrix Remodeling following Chemotherapy
36. Physical confinement and cell proximity increase cell migration rates and invasiveness: A mathematical model of cancer cell invasion through flexible channels
37. Embryonic stem cells growing in 3-dimensions shift from reliance on the substrate to each other for mechanical support
38. Metastatic breast cancer cells adhere strongly on varying stiffness substrates, initially without adjusting their morphology
39. Proximity of Metastatic Cells Enhances Their Mechanobiological Invasiveness
40. Mechanical Interaction of Metastatic Cancer Cells with a Soft Gel
41. Mechanobiology of metastatic cancer
42. Contributors
43. Proximity of Metastatic Cells Strengthens the Mechanical Interaction with Their Environment
44. Effect of Natural Honey Treatment and External Stretching on Kinematics of Cell Migration During Gap Closure
45. Novel algorithm and MATLAB-based program for automated power law analysis of single particle, time-dependent mean-square displacement
46. Computational modeling reveals a vital role for proximity-driven additive and synergistic cell-cell interactions in increasing cancer invasiveness
47. Rheology and microrheology of natural and reduced-calorie Israeli honeys as a model for high-viscosity Newtonian liquids
48. Physical Confinement and Cell Proximity Increase Cell Migration Rates and Invasiveness: A Mathematical Model of Cancer Cell Invasion Through Flexible Channels
49. Particle tracking in living cells: a review of the mean square displacement method and beyond
50. Chapter 9 - The mechanobiology of adipocytes in the context of diabetes: much more than a fat depot
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