Mechanical deformation of neutrophils into narrow channels induces pseudopod projection and changes in biomechanical properties.
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Roger D Kamm | R. Kamm | Belinda Yap | B. Yap
[1] D Needham,et al. Rapid flow of passive neutrophils into a 4 microns pipet and measurement of cytoplasmic viscosity. , 1990, Journal of biomechanical engineering.
[2] T C Lubensky,et al. Microrheology, stress fluctuations, and active behavior of living cells. , 2003, Physical review letters.
[3] R D Kamm,et al. Computational modeling of RBC and neutrophil transit through the pulmonary capillaries. , 2001, Journal of applied physiology.
[4] Kinam Park,et al. Surface modification using silanated poly(ethylene glycol)s. , 2000, Biomaterials.
[5] J. Hogg,et al. Comparison of neutrophil and capillary diameters and their relation to neutrophil sequestration in the lung. , 1993, Journal of applied physiology.
[6] J. Hogg. Neutrophil kinetics and lung injury. , 1987, Physiological reviews.
[7] D A Weitz,et al. Microrheology of entangled F-actin solutions. , 2003, Physical review letters.
[8] Richard T. Lee,et al. Cell mechanics and mechanotransduction: pathways, probes, and physiology. , 2004, American journal of physiology. Cell physiology.
[9] Mark Bathe,et al. Neutrophil transit times through pulmonary capillaries: the effects of capillary geometry and fMLP-stimulation. , 2002, Biophysical journal.
[10] E. Evans,et al. Apparent viscosity and cortical tension of blood granulocytes determined by micropipet aspiration. , 1989, Biophysical journal.
[11] G. Whitesides,et al. Soft lithography in biology and biochemistry. , 2001, Annual review of biomedical engineering.
[12] R. Skalak,et al. Passive mechanical properties of human leukocytes. , 1981, Biophysical journal.
[13] J. Hogg,et al. Erythrocyte and polymorphonuclear cell transit time and concentration in human pulmonary capillaries. , 1994, Journal of applied physiology.
[14] D. Wirtz,et al. Mechanics of living cells measured by laser tracking microrheology. , 2000, Biophysical journal.
[15] J. Butler,et al. Regional rheological differences in locomoting neutrophils. , 2004, American journal of physiology. Cell physiology.
[16] D. Wirtz,et al. Mechanics and multiple-particle tracking microheterogeneity of alpha-actinin-cross-linked actin filament networks. , 2001, Biophysical journal.
[17] W. MacNee,et al. In vivo neutrophil sequestration within lungs of humans is determined by in vitro "filterability". , 1991, Journal of applied physiology.
[18] G. Schmid-Schönbein,et al. Pseudopod projection and cell spreading of passive leukocytes in response to fluid shear stress. , 2004, Biophysical journal.
[19] G. Downey. "Effect of mechanical deformation on structure and function of polymorphonuclear leukocytes". , 1997, Journal of applied physiology.
[20] D A Weitz,et al. Two-point microrheology of inhomogeneous soft materials. , 2000, Physical review letters.
[21] Shunji Nojima,et al. Optical-gain enhancement in two-dimensional active photonic crystals , 2001 .
[22] E. Evans,et al. Cortical shell-liquid core model for passive flow of liquid-like spherical cells into micropipets. , 1989, Biophysical journal.
[23] R. Skalak,et al. Cytoplasmic rheology of passive neutrophils. , 1991, Biorheology.
[24] D. Beebe,et al. Three-dimensional micro-channel fabrication in polydimethylsiloxane (PDMS) elastomer , 2000, Journal of Microelectromechanical Systems.
[25] Yiider Tseng,et al. Intracellular mechanics of migrating fibroblasts. , 2004, Molecular biology of the cell.
[26] S. Yalisove,et al. Growth anisotropy and self-shadowing: A model for the development of in-plane texture during polycrystalline thin-film growth , 1997 .
[27] Denis Wirtz,et al. Particle Tracking Microrheology of Complex Fluids , 1997 .
[28] Yiider Tseng,et al. Rho kinase regulates the intracellular micromechanical response of adherent cells to rho activation. , 2004, Molecular biology of the cell.
[29] C. Hanger,et al. Sites of leukocyte sequestration in the pulmonary microcirculation. , 1995, Journal of applied physiology.
[30] D Needham,et al. Time-dependent recovery of passive neutrophils after large deformation. , 1991, Biophysical journal.
[31] Donald E Ingber,et al. Mechanobiology and diseases of mechanotransduction , 2003, Annals of medicine.
[32] D. Grier,et al. Methods of Digital Video Microscopy for Colloidal Studies , 1996 .
[33] H. Nagawa,et al. Shear stress affects migration behavior of polymorphonuclear cells arrested on endothelium. , 2000, Cellular immunology.
[34] E Evans,et al. Passive material behavior of granulocytes based on large deformation and recovery after deformation tests. , 1984 .
[35] G. Schmid-Schönbein,et al. The leukocyte response to fluid stress. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[36] R. Waugh,et al. Passive mechanical behavior of human neutrophils: power-law fluid. , 1993, Biophysical journal.
[37] David Juncker,et al. Soft and rigid two-level microfluidic networks for patterning surfaces , 2001 .
[38] D. Navajas,et al. Scaling the microrheology of living cells. , 2001, Physical review letters.
[39] J. Butler,et al. Intracellular elasticity and viscosity in the body , leading , and trailing regions of locomoting neutrophils , 1999 .
[40] G. Whitesides,et al. Fabrication of microfluidic systems in poly(dimethylsiloxane) , 2000, Electrophoresis.
[41] E. Elson,et al. Retention of leukocytes in capillaries: role of cell size and deformability. , 1990, Journal of applied physiology.