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008 100414s2010 flua b 001 0 eng
010 _a 2010014601
015 _aGBB046723
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016 7 _a101528713
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016 7 _a015522896
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020 _a9781439820056 (hardcover : alk. paper)
020 _a1439820058 (hardcover : alk. paper)
035 _a(OCoLC)ocn608618108
040 _aDNLM/DLC
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042 _apcc
050 0 0 _aQP517.R48
_bC66 2010
060 0 0 _a2010 H-159
060 1 0 _aQU 105
_bC738 2010
070 0 _aQP517.R48
_bC66 2010
082 0 0 _a612/.01522
_222
245 0 0 _aComputational hydrodynamics of capsules and biological cells /
_cedited by C. Pozrikidis.
260 _aBoca Raton :
_bCRC Press,
_cc2010.
300 _axv, 311 p. :
_bill. ;
_c25 cm.
490 1 _aChapman and Hall/CRC mathematical and computational biology series
500 _a"A Chapman & Hall book."
504 _aIncludes bibliographical references and index.
505 0 _aFlow-induced deformation of two-dimentional bioconcave capsules / C. Pozrikidis -- Flow-induced deformation of artificial capsules / D. Barthès-Biesel, J. Walter, A.-V. Salsac -- A high-resolution fast boundary-integral method for multiple interacting blood cells / J.B. Freund, H. Zhao -- Simulating microscopic hemodynamics and hemorheology with the immersed-boundary lattice-Boltzmann method / J. Zhang, P.C. Johnson, A.S. Popel -- Front-tracking methods for capsules, vesicles and blood cells / P. Bagchi -- Dissipative particle dynamics modeling of red blood cells / D.A. Fedosov, B. Caswell, G.E. Karniadakis -- Simulation of red blood cell motion in microvessls and bifurcations / T.W. Secomb -- Multiscale modeling of transport and receptor-mediated adhesion of platelets in the bloodstram / N.A. Mody, M.G. King.
520 _a"Preface Computational biofluiddynamics addresses a diverse family of problems involving fluid flow inside and around living organisms, organs and tissue, biological cells, and other biological materials. Numerical methods combine aspects of computational mechanics, fluid dynamics, computational physics, computational chemistry and biophysics into an integrated framework that couples a broad range of scales. The goal of this edited volume is to provide a comprehensive, rigorous, and current introduction into the fundamental concepts, mathematical formulation, alternative approaches, and predictions of computational hydrodynamics of capsules and biological cells. The book is meant to serve both as a research reference and as a teaching resource. Scope The numerical methods discussed in the following eight chapters cover a broad range of possible formulations for simulating the motion of rigid particles (platelets) and the flow-induced deformation of liquid capsules and cells enclosed by viscoelastic membranes. Although some of the physical problems discussed in different chapters are similar or identical, the repetition is desirable in that solutions produced by different numerical approaches can be compared and the efficiency of alternative formulations can be assessed. The consistency of the results validates the procedures and offers several alternatives." Provided by publisher.
650 0 _aBody fluid flow
_xMathematical models.
650 0 _aFluid dynamics
_xMathematical models.
650 0 _aCells.
650 1 2 _aBody Fluids
_xphysiology.
650 1 2 _aComputational Biology
_xmethods.
650 2 2 _aBiophysical Phenomena.
650 2 2 _aBlood Cells
_xphysiology.
650 2 2 _aCell Physiological Phenomena.
650 2 2 _aHemorheology.
700 1 _aPozrikidis, C.
_q(Constantine),
_d1958-
830 0 _aChapman and Hall/CRC mathematical & computational biology series.
906 _a7
_bcbc
_corignew
_d1
_eecip
_f20
_gy-gencatlg
942 _2lcc
_cBK
999 _c191
_d191