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Items: 1 to 20 of 32

1.

Measurements of elastic moduli of silicone gel substrates with a microfluidic device.

Gutierrez E, Groisman A.

PLoS One. 2011;6(9):e25534. doi: 10.1371/journal.pone.0025534.

2.

Quantitative dynamic footprinting microscopy reveals mechanisms of neutrophil rolling.

Sundd P, Gutierrez E, Pospieszalska MK, Zhang H, Groisman A, Ley K.

Nat Methods. 2010 Oct;7(10):821-4. doi: 10.1038/nmeth.1508.

3.

Optimization of traction force microscopy for micron-sized focal adhesions.

Stricker J, Sabass B, Schwarz US, Gardel ML.

J Phys Condens Matter. 2010 May 19;22(19):194104. doi: 10.1088/0953-8984/22/19/194104.

4.

Substrate stiffness and the receptor-type tyrosine-protein phosphatase alpha regulate spreading of colon cancer cells through cytoskeletal contractility.

Krndija D, Schmid H, Eismann JL, Lother U, Adler G, Oswald F, Seufferlein T, von Wichert G.

Oncogene. 2010 May 6;29(18):2724-38. doi: 10.1038/onc.2010.25.

PMID:
20208566
5.

Conformational changes and signaling in cell and matrix physics.

Brown AE, Discher DE.

Curr Biol. 2009 Sep 15;19(17):R781-9. doi: 10.1016/j.cub.2009.06.054. Review.

6.

Synthetic materials in the study of cell response to substrate rigidity.

Nemir S, West JL.

Ann Biomed Eng. 2010 Jan;38(1):2-20. doi: 10.1007/s10439-009-9811-1. Review.

PMID:
19816774
7.

Intrinsic extracellular matrix properties regulate stem cell differentiation.

Reilly GC, Engler AJ.

J Biomech. 2010 Jan 5;43(1):55-62. doi: 10.1016/j.jbiomech.2009.09.009. Review.

PMID:
19800626
8.

Vascular smooth muscle cell durotaxis depends on substrate stiffness gradient strength.

Isenberg BC, Dimilla PA, Walker M, Kim S, Wong JY.

Biophys J. 2009 Sep 2;97(5):1313-22. doi: 10.1016/j.bpj.2009.06.021.

9.

Growth factors, matrices, and forces combine and control stem cells.

Discher DE, Mooney DJ, Zandstra PW.

Science. 2009 Jun 26;324(5935):1673-7. doi: 10.1126/science.1171643. Review.

10.

Quantification of cell edge velocities and traction forces reveals distinct motility modules during cell spreading.

Dubin-Thaler BJ, Hofman JM, Cai Y, Xenias H, Spielman I, Shneidman AV, David LA, Döbereiner HG, Wiggins CH, Sheetz MP.

PLoS One. 2008;3(11):e3735. doi: 10.1371/journal.pone.0003735.

11.

Lifeact: a versatile marker to visualize F-actin.

Riedl J, Crevenna AH, Kessenbrock K, Yu JH, Neukirchen D, Bista M, Bradke F, Jenne D, Holak TA, Werb Z, Sixt M, Wedlich-Soldner R.

Nat Methods. 2008 Jul;5(7):605-7. doi: 10.1038/nmeth.1220.

12.

Molecular dynamics and forces of a motile cell simultaneously visualized by TIRF and force microscopies.

Iwadate Y, Yumura S.

Biotechniques. 2008 May;44(6):739-50. doi: 10.2144/000112752.

13.

Actin-based propulsive forces and myosin-II-based contractile forces in migrating Dictyostelium cells.

Iwadate Y, Yumura S.

J Cell Sci. 2008 Apr 15;121(Pt 8):1314-24. doi: 10.1242/jcs.021576.

14.

High resolution traction force microscopy based on experimental and computational advances.

Sabass B, Gardel ML, Waterman CM, Schwarz US.

Biophys J. 2008 Jan 1;94(1):207-20.

15.

CD98hc (SLC3A2) participates in fibronectin matrix assembly by mediating integrin signaling.

Féral CC, Zijlstra A, Tkachenko E, Prager G, Gardel ML, Slepak M, Ginsberg MH.

J Cell Biol. 2007 Aug 13;178(4):701-11.

16.

Differential transmission of actin motion within focal adhesions.

Hu K, Ji L, Applegate KT, Danuser G, Waterman-Storer CM.

Science. 2007 Jan 5;315(5808):111-5.

17.

Matrix elasticity directs stem cell lineage specification.

Engler AJ, Sen S, Sweeney HL, Discher DE.

Cell. 2006 Aug 25;126(4):677-89.

18.

Migration of tumor cells in 3D matrices is governed by matrix stiffness along with cell-matrix adhesion and proteolysis.

Zaman MH, Trapani LM, Sieminski AL, Mackellar D, Gong H, Kamm RD, Wells A, Lauffenburger DA, Matsudaira P.

Proc Natl Acad Sci U S A. 2006 Jul 18;103(29):10889-94. Erratum in: Proc Natl Acad Sci U S A. 2006 Sep 12;103(37):13897.

19.

Substrate rigidity regulates the formation and maintenance of tissues.

Guo WH, Frey MT, Burnham NA, Wang YL.

Biophys J. 2006 Mar 15;90(6):2213-20.

20.
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