-
1
-
-
0019355002
-
The dynamic response of vascular endothelial cells to fluid shear stress
-
Dewey, C. F., Jr., Bussolari, S. R., Gimbrone, M. A., Jr., and Davies, P. F., 1981, "The Dynamic Response of Vascular Endothelial Cells to Fluid Shear Stress," ASME J. Biomech. Eng., 103, pp. 177-185.
-
(1981)
ASME J. Biomech. Eng.
, vol.103
, pp. 177-185
-
-
Dewey Jr., C.F.1
Bussolari, S.R.2
Gimbrone Jr., M.A.3
Davies, P.F.4
-
2
-
-
0019359912
-
Vascular endothelial morphology as an indicator of the pattern of blood flow
-
Nerem, R. M., Levesque, M. J., and Cornhill, J. F., 1981, "Vascular Endothelial Morphology as an Indicator of the Pattern of Blood Flow," ASME J. Biomech. Eng., 103, pp. 172-176.
-
(1981)
ASME J. Biomech. Eng.
, vol.103
, pp. 172-176
-
-
Nerem, R.M.1
Levesque, M.J.2
Cornhill, J.F.3
-
3
-
-
0020646847
-
Behaviour of vascular smooth muscle cells during repeated stretching of the substratum in vitro
-
Buck, R. C., 1983, "Behaviour of Vascular Smooth Muscle Cells during Repeated Stretching of the Substratum in Vitro," Atherosclerosis, 46, pp. 217-223.
-
(1983)
Atherosclerosis
, vol.46
, pp. 217-223
-
-
Buck, R.C.1
-
4
-
-
0035965308
-
Fibroblasts in mechanically stressed collagen lattices assume a "synthetic" phenotype
-
Kessler, D., Dethlefsen, S., Haase, I., Plomann, M., Hirche, F., Krieg, T., and Eckes, B., 2001, "Fibroblasts in Mechanically Stressed Collagen Lattices Assume a "Synthetic" Phenotype," J. Biol. Chem., 276, pp. 36575-36585.
-
(2001)
J. Biol. Chem.
, vol.276
, pp. 36575-36585
-
-
Kessler, D.1
Dethlefsen, S.2
Haase, I.3
Plomann, M.4
Hirche, F.5
Krieg, T.6
Eckes, B.7
-
5
-
-
1442275378
-
Fibroblast responses to cyclic mechanical stretching depend on cell orientation to the stretching direction
-
Wang, J. H., Yang, G., Li, Z., and Shen, W., 2004, "Fibroblast Responses to Cyclic Mechanical Stretching Depend on Cell Orientation to the Stretching Direction," J. Biomech., 37, pp. 573-576.
-
(2004)
J. Biomech.
, vol.37
, pp. 573-576
-
-
Wang, J.H.1
Yang, G.2
Li, Z.3
Shen, W.4
-
6
-
-
0242586090
-
Simultaneous mechanical loading and confocal reflection microscopy for three-dimensional microbiomechanical analysis of biomaterials and tissue constructs
-
Voytik-Harbin, S. L., Roeder, B. A., Sturgis, J. E., Kokini, K., and Robinson, J. P., 2003, "Simultaneous Mechanical Loading and Confocal Reflection Microscopy for Three-Dimensional Microbiomechanical Analysis of Biomaterials and Tissue Constructs," Microsc. Microanal., 9, pp. 74-85.
-
(2003)
Microsc. Microanal.
, vol.9
, pp. 74-85
-
-
Voytik-Harbin, S.L.1
Roeder, B.A.2
Sturgis, J.E.3
Kokini, K.4
Robinson, J.P.5
-
7
-
-
0026444077
-
Vascular endothelium responds to fluid shear stress gradients
-
DePaola, N., Gimbrone, M. A. Jr., Davies, P. F., and Dewey, C. F. Jr., 1992, "Vascular Endothelium Responds to Fluid Shear Stress Gradients," Arterioscler., Thromb., Vasc. Biol., 12, pp. 1254-1257.
-
(1992)
Arterioscler., Thromb., Vasc. Biol.
, vol.12
, pp. 1254-1257
-
-
DePaola, N.1
Gimbrone Jr., M.A.2
Davies, P.F.3
Dewey Jr., C.F.4
-
8
-
-
0032769546
-
Vascular endothelial cells respond to spatial gradients in fluid shear stress by enhanced activation of transcription factors
-
Nagel, T., Resnick, N., Dewey, C. F., Jr., and Gimbrone, M. A., Jr., 1999, "Vascular Endothelial Cells Respond to Spatial Gradients in Fluid Shear Stress by Enhanced Activation of Transcription Factors," Arterioscler., Thromb., Vasc. Biol., 19, pp. 1825-1834.
-
(1999)
Arterioscler., Thromb., Vasc. Biol.
, vol.19
, pp. 1825-1834
-
-
Nagel, T.1
Resnick, N.2
Dewey Jr., C.F.3
Gimbrone Jr., M.A.4
-
9
-
-
0029294440
-
Characterization of a sudden expansion flow chamber to study the response of endothelium to flow recirculation
-
Truskey, G. A., Barber, K. M., Robey, T. C., Olivier, L. A., and Combs, M. P., 1995, "Characterization of a Sudden Expansion Flow Chamber to Study the Response of Endothelium to Flow Recirculation," ASME J. Biomech. Eng., 117, pp. 203-210.
-
(1995)
ASME J. Biomech. Eng.
, vol.117
, pp. 203-210
-
-
Truskey, G.A.1
Barber, K.M.2
Robey, T.C.3
Olivier, L.A.4
Combs, M.P.5
-
10
-
-
0031456799
-
Shear stress gradients remodel endothelial monolayers in vitro via a cell proliferation-migration-loss cycle
-
Tardy, Y., Resnick, N., Nagel, T., Gimbrone, M. A. Jr., and Dewey, C. F. Jr., 1997, "Shear Stress Gradients Remodel Endothelial Monolayers in Vitro via a Cell Proliferation-Migration-Loss Cycle," Arterioscler., Thromb., Vasc. Biol., 17, pp. 3102-3106.
-
(1997)
Arterioscler., Thromb., Vasc. Biol.
, vol.17
, pp. 3102-3106
-
-
Tardy, Y.1
Resnick, N.2
Nagel, T.3
Gimbrone Jr., M.A.4
Dewey Jr., C.F.5
-
11
-
-
0037418433
-
Directed movement of vascular smooth muscle cells on gradient-compliant hydrogels
-
Wong, J. Y., Velasco, A., Rajagopalan, P., and Pham, Q., 2003, "Directed Movement of Vascular Smooth Muscle Cells on Gradient-Compliant Hydrogels," Langmuir, 19, pp. 1908-1913.
-
(2003)
Langmuir
, vol.19
, pp. 1908-1913
-
-
Wong, J.Y.1
Velasco, A.2
Rajagopalan, P.3
Pham, Q.4
-
12
-
-
0033917881
-
Cell movement is guided by the rigidity of the substrate
-
Lo, C. M., Wang, H. B., Dembo, M., and Wang, Y. L., 2000, "Cell Movement Is Guided by the Rigidity of the Substrate," Biophys. J., 79, pp. 144-152.
-
(2000)
Biophys. J.
, vol.79
, pp. 144-152
-
-
Lo, C.M.1
Wang, H.B.2
Dembo, M.3
Wang, Y.L.4
-
13
-
-
2942748125
-
Redistribution of stress due to a circular hole in a nonlinear anisotropic membrane
-
David, G., and Humphrey, J. D., 2004, "Redistribution of Stress Due to a Circular Hole in a Nonlinear Anisotropic Membrane," J. Biomech., 37, pp. 1197-1203.
-
(2004)
J. Biomech.
, vol.37
, pp. 1197-1203
-
-
David, G.1
Humphrey, J.D.2
-
14
-
-
0003715005
-
-
Springer, New York
-
Fung, Y. C., 1990, Biomechanics: Motion, Flow, Stress, and Growth, Springer, New York.
-
(1990)
Biomechanics: Motion, Flow, Stress, and Growth
-
-
Fung, Y.C.1
-
16
-
-
0003837393
-
-
Springer, New York
-
Humphrey, J. D., 2002, Cardiovascular Solid Mechanics: Cells, Tissues, and Organs, Springer, New York.
-
(2002)
Cardiovascular Solid Mechanics: Cells, Tissues, and Organs
-
-
Humphrey, J.D.1
-
17
-
-
0035988853
-
Fluid and solid mechanical implications of vascular stenting
-
Moore, J. E., Jr., and Berry, J. L., 2002, "Fluid and Solid Mechanical Implications of Vascular Stenting," Ann. Biomed. Eng., 30, pp. 498-508.
-
(2002)
Ann. Biomed. Eng.
, vol.30
, pp. 498-508
-
-
Moore Jr., J.E.1
Berry, J.L.2
-
18
-
-
0027358735
-
Mechanical strain induces growth of vascular smooth-muscle cells via autocrine action of PDGF
-
Wilson, E., Mai, Q., Sudhir, K., Weiss, R. H., and Ives, H. E., 1993, "Mechanical Strain Induces Growth of Vascular Smooth-Muscle Cells via Autocrine Action of PDGF," J. Cell Biol., 123, pp. 741-747.
-
(1993)
J. Cell Biol.
, vol.123
, pp. 741-747
-
-
Wilson, E.1
Mai, Q.2
Sudhir, K.3
Weiss, R.H.4
Ives, H.E.5
-
19
-
-
7444234984
-
An analysis of the complete strain field within flexercell™ membranes
-
Vande Geest, J. P., Di Martino, E. S., and Vorp, D. A., 2004, "An Analysis of the Complete Strain Field within Flexercell™ Membranes," J. Biomech., 37, pp. 1923-1928.
-
(2004)
J. Biomech.
, vol.37
, pp. 1923-1928
-
-
Vande Geest, J.P.1
Di Martino, E.S.2
Vorp, D.A.3
|