Biomedical Engineering Reference
In-Depth Information
modium falciparum. Proceedings of the National Academy of Sciences USA 105 : 13730-
13735, 2008.
[13] Popescu G., Park Y.-K., Dasari R.R., Badizadegan K., Feld M.S.: Coherence properties of
red blood cell membrane motions. Physical Review E 76 : 031902, 2007.
[14] Abkarian M., Faivre M., Viallat A.: Swinging of red blood cells under shear flow. Physical
Review Letters 98 : 188302, 2007.
[15] Fischer T.M.: Shape memory of human red blood cells. Biophysical Journal 86 : 3304-3313,
2004.
[16] Suzuki Y., Tateishi N., Soutani M., Maeda N.: Deformation of erythrocytes in microvessels
and glass capillaries: effect of erythrocyte deformability. Microcirculation 3 : 49-57, 1996.
[17] Tomaiuolo G., Preziosi V., Simeone M., Guido S., Ciancia R., Martinelli V., Rinaldi C.,
Rotoli B.: A methodology to study the deformability of red blood cells flowing in microcap-
illaries in vitro. Ann Ist Super Sanita 43 : 186-192, 2007.
[18] Rosenbluth M., Lam W., Fletcher D.: Analyzing cell mechanics in hematologic diseases with
microfluidic biophysical flow cytometry. Lab on a Chip 8 : 1062-1070, 2008.
[19] Li J., Lykotrafitis G., Dao M., Suresh S.: Cytoskeletal dynamics of human erythrocyte. Pro-
ceedings of the National Academy of Sciences USA 104 : 4937-4942, 2007.
[20] Gov N.S.: Active elastic network: cytoskeleton of the red blood cell. Physical Review E 75 :
011921, 2007.
[21] Gov N.S., Safran S.A.: Red blood cell membrane fluctuations and shape controlled by ATP-
induced cytoskeletal defects. Biophysical Journal 88 : 1859-1874, 2005.
[22] Magowan C., Brown J.T., Liang J., Heck J., Coppel R.L., Mohandas N., MeyerIlse W.: Intra-
cellular structures of normal and aberrant Plasmodium falciparum malaria parasites imaged
by soft x-ray microscopy. Proceedings of the National Academy of Sciences of the United
States of America 94 : 6222-6227, 1997.
[23] Eggleton C.D., Popel A.S.: Large deformation of red blood cell ghosts in a simple shear flow.
Physics of Fluids 10 : 1834, 1998.
[24] Evans E.A., Skalak R.: Mechanics and thermodynamics of biomembranes. CRC Press, Inc.,
Boca Raton, Florida, 1980.
[25] Pozrikidis C.: Numerical Simulation of Cell Motion in Tube Flow. Annals of Biomedical
Engineering 33 : 165-178, 2005.
[26] Discher D.E., Boal D.H., Boey S.K.: Simulations of the erythrocyte cytoskeleton at large
deformation. II. Micropipette aspiration. Biophysical Journal 75 : 1584-1597, 1998.
[27] Li J., Dao M., Lim C.T., Suresh S.: Spectrin-level modeling of the cytoskeleton and optical
tweezers stretching of the erythrocyte. Biophysical Journal 88 : 3707-3719, 2005.
[28] Dupin M.M., Halliday I., Care C.M., Alboul L., Munn L.L.: Modeling the flow of dense sus-
pensions of deformable particles in three dimensions. Physical Review E 75 : 066707, 2007.
[29] Dzwinel W., Boryczko K., Yuen D.A.: A discrete-particle model of blood dynamics in cap-
illary vessels. Journal of Colloid and Interface Science 258 : 163-173, 2003.
[30] Noguchi H., Gompper G.: Shape transitions of fluid vesicles and red blood cells in capillary
flows. Proceedings of the National Academy of Sciences USA 102 : 14159-14164, 2005.
[31] Pivkin I.V., Karniadakis G.E.: Accurate coarse-grained modeling of red blood cells. Physical
Review Letters 101 : 118105, 2008.
[32] Noguchi H., Gompper G.: Dynamics of fluid vesicles in shear flow: Effect of the membrane
viscosity and thermal fluctuations. Physical Review E 72 : 011901, 2005.
[33] Skotheim J.M., Secomb T.W.: Red blood cells and other nonspherical capsules in shear flow:
Oscillatory dynamics and the tank-treading-to-tumbling transition. Physical Review Letters
98 : 078301, 2007.
[34] Succi S.: The Lattice Boltzmann equation for fluid dynamics and beyond. Oxford University
Press, Oxford, 2001.
[35] Malevanets A., Kapral R.: Mesoscopic model for solvent dynamics. Journal of Chemical
Physics 110 : 8605-8613, 1999.
[36] Hoogerbrugge P.J., Koelman J.M.V.A.: Simulating microscopic hydrodynamic phenomena
with dissipative particle dynamics. Europhysics Letters 19 : 155-160, 1992.
Search WWH ::




Custom Search