Computational model of whole blood exhibiting lateral platelet motion induced by red blood cells

scientific article published on March 2010

Computational model of whole blood exhibiting lateral platelet motion induced by red blood cells is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1002/CNM.1274
P932PMC publication ID2997713
P698PubMed publication ID21152372
P5875ResearchGate publication ID49678063
P894zbMATH Open document ID1183.92022

P2093author name stringAaron L Fogelson
Lindsay M Crowl
P2860cites workLattice-Gas Automata for the Navier-Stokes EquationQ27450304
Tank-tread frequency of the red cell membrane: dependence on the viscosity of the suspending mediumQ33286504
An estimated shape function for drift in a platelet-transport modelQ34018594
Model of platelet transport in flowing blood with drift and diffusion termsQ34087558
Transient lateral transport of platelet-sized particles in flowing blood suspensionsQ34115366
Strain Energy Function of Red Blood Cell MembranesQ34701728
Mesoscale simulation of blood flow in small vesselsQ35774411
Blood platelets are concentrated near the wall and red blood cells, in the center in flowing bloodQ36438412
Erythrocyte membrane elasticity and viscosityQ39763472
Red blood cell aggregation and dissociation in shear flows simulated by lattice Boltzmann methodQ40171527
Micro-scale dynamic simulation of erythrocyte-platelet interaction in blood flowQ47856475
Transient deformation of elastic capsules in shear flow: effect of membrane bending stiffness.Q50943008
Discrete lattice effects on the forcing term in the lattice Boltzmann method.Q52040605
Use of the Boltzmann equation to simulate lattice gas automata.Q52426237
Theory of the lattice Boltzmann method: From the Boltzmann equation to the lattice Boltzmann equationQ56658803
The immersed boundary methodQ59619665
Conditions for the occurrence of large near-wall excesses of small particles during blood flowQ67959469
Concentration profile of blood platelets differs in arterioles and venulesQ68098782
The near-wall excess of platelet-sized particles in blood flow: its dependence on hematocrit and wall shear rateQ69032903
Distribution of blood platelets flowing in arteriolesQ70067768
Red cell motions and wall interactions in tube flowQ70599261
Effect of flow on cells near wallsQ70599268
Platelet-wall interactions in continuum models of platelet thrombosis: formulation and numerical solutionQ81067532
P433issue3-4
P921main subjectcomputational modelQ1122506
whole bloodQ7997549
P6104maintained by WikiProjectWikiProject MathematicsQ8487137
P304page(s)471-487
P577publication date2010-03-01
P1433published inInternational Journal for Numerical Methods in Biomedical EngineeringQ24031559
P1476titleComputational model of whole blood exhibiting lateral platelet motion induced by red blood cells
P478volume26

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cites work (P2860)
Q35875346A phenomenological particle-based platelet model for simulating filopodia formation during early activation
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Q38805590Computational fluid dynamics in the microcirculation and microfluidics: what role can the lattice Boltzmann method play?
Q38934014Elevated hematocrit enhances platelet accumulation following vascular injury.
Q51000739Exploring deformable particles in vascular-targeted drug delivery: Softer is only sometimes better.
Q42781370Hematocrit and flow rate regulate the adhesion of platelets to von Willebrand factor
Q36995559Hydrodynamic interaction between a platelet and an erythrocyte: effect of erythrocyte deformability, dynamics, and wall proximity
Q41012880In Vitro Experimental Model for the Long-Term Analysis of Cellular Dynamics During Bronchial Tree Development from Lung Epithelial Cells.
Q35777911Influence of Red Blood Cells on Nanoparticle Targeted Delivery in Microcirculation.
Q50453339Microparticle shape effects on margination, near-wall dynamics and adhesion in a three-dimensional simulation of red blood cell suspension.
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Q27025541Multiscale systems biology and physics of thrombosis under flow
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