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Migration in Confined 3D Environments Is Determined by a Combination of Adhesiveness, Nuclear Volume, Contractility, and Cell Stiffness

by L. A. Lautscham, C. Kammerer, J. R. Lange, T. Kolb, C. Mark, A. Schilling, P. L. Strissel, R. Strick, C. Gluth, A. C. Rowat, C. Metzner, B. Fabry
Reference:
L. A. Lautscham, C. Kammerer, J. R. Lange, T. Kolb, C. Mark, A. Schilling, P. L. Strissel, R. Strick, C. Gluth, A. C. Rowat, C. Metzner, B. FabryMigration in Confined 3D Environments Is Determined by a Combination of Adhesiveness, Nuclear Volume, Contractility, and Cell StiffnessIn Biophys J, volume 109, 2015.
Bibtex Entry:
@article{RN3351,
   author = {Lautscham, L. A. and Kammerer, C. and Lange, J. R. and Kolb, T. and Mark, C. and Schilling, A. and Strissel, P. L. and Strick, R. and Gluth, C. and Rowat, A. C. and Metzner, C. and Fabry, B.},
   title = {Migration in Confined 3D Environments Is Determined by a Combination of Adhesiveness, Nuclear Volume, Contractility, and Cell Stiffness},
   journal = {Biophys J},
   volume = {109},
   number = {5},
   pages = {900-13},
   ISSN = {1542-0086 (Electronic)
0006-3495 (Linking)},
   DOI = {10.1016/j.bpj.2015.07.025},
   url = {Lautscham_BiophysJ_2015.pdf},
   year = {2015},
   type = {Journal Article}
}