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1
Nanoscale architecture of integrin-based cell adhesions.
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2
Molecular mechanisms underlying the force-dependent regulation of actin-to-ECM linkage at the focal adhesions.
Prog Mol Biol Transl Sci. 2014;126:135-54. doi: 10.1016/B978-0-12-394624-9.00006-3.
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Actin-membrane interaction in focal adhesions.
Cell Differ Dev. 1990 Dec 2;32(3):337-42. doi: 10.1016/0922-3371(90)90048-2.
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Super-resolution microscopy: a new dimension in focal adhesions.
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6
Vinculin regulates the recruitment and release of core focal adhesion proteins in a force-dependent manner.
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7
Integrating actin dynamics, mechanotransduction and integrin activation: the multiple functions of actin binding proteins in focal adhesions.
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8
Force loading explains spatial sensing of ligands by cells.
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9
Talin Autoinhibition Regulates Cell-ECM Adhesion Dynamics and Wound Healing In Vivo.
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Early molecular events in the assembly of matrix adhesions at the leading edge of migrating cells.
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The role of non-linear viscoelastic hydrogel mechanics in cell culture and transduction.
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LIM Domain Proteins link molecular and global tension by recognizing strained actin in adhesions.
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ECM Mechanics Control Jamming-to-Unjamming Transition of Cancer Cells.
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Emerging mechanomedicines informed by mechanotransduction along the integrin-cytoskeleton-nucleus axis.
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