Simulations of time harmonic blood flow in the Mesenteric artery: comparing finite element and lattice Boltzmann methods

scientific article published on 02 October 2009

Simulations of time harmonic blood flow in the Mesenteric artery: comparing finite element and lattice Boltzmann methods is …
instance of (P31):
scholarly articleQ13442814

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P6179Dimensions Publication ID1004552646
P356DOI10.1186/1475-925X-8-23
P932PMC publication ID2764713
P698PubMed publication ID19799782

P2093author name stringPeter M A Sloot
Alfons G Hoekstra
Pat Lawford
Adam Jeays
Rod Hose
Lilit Axner
P2860cites workMethod for the calculation of velocity, rate of flow and viscous drag in arteries when the pressure gradient is knownQ24538681
Biomechanics of abdominal aortic aneurysmQ24649626
A strategy to reduce cardiovascular disease by more than 80%Q24679592
Characterisation of the haemodynamics of the superior mesenteric arteryQ33262127
PIV-measured versus CFD-predicted flow dynamics in anatomically realistic cerebral aneurysm modelsQ39843103
Functional organization of central pathways regulating the cardiovascular systemQ40746768
Mesoscopic simulations of systolic flow in the human abdominal aorta.Q46952147
Concurrent numerical simulation of flow and blood clotting using the lattice Boltzmann technique.Q51899411
Influence of Stagnant Zones on Transient and Asymptotic Dispersion in Macroscopically Homogeneous Porous MediaQ58203829
Hydraulic permeability of (un)bounded fibrous media using the lattice boltzmann methodQ73113581
Lattice Boltzmann method for simulating the viscous flow in large distensible blood vesselsQ74281876
In vivo validation of numerical prediction of blood flow in arterial bypass graftsQ74761765
Simulating time harmonic flows with the lattice Boltzmann methodQ80330439
Analog studies of the human systemic arterial treeQ81589283
P921main subjectLattice Boltzmann methodsQ1807064
P304page(s)23
P577publication date2009-10-02
P1433published inBioMedical Engineering OnLineQ15753859
P1476titleSimulations of time harmonic blood flow in the Mesenteric artery: comparing finite element and lattice Boltzmann methods
P478volume8

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cites work (P2860)
Q36394513A Comparison of Fully-Coupled 3D In-Stent Restenosis Simulations to In-vivo Data
Q37071586A patient-specific study of type-B aortic dissection: evaluation of true-false lumen blood exchange
Q36019388Computational fluid dynamic analysis to prevent aortic root and valve clots during left ventricular assist device support
Q36069085MRI-based computational hemodynamics in patients with aortic coarctation using the lattice Boltzmann methods: Clinical validation study
Q34778866Modelling the effect of a functional endothelium on the development of in-stent restenosis.
Q64886501Multiple Aneurysms AnaTomy CHallenge 2018 (MATCH)-Phase Ib: Effect of morphology on hemodynamics.
Q38971277Towards the virtual artery: a multiscale model for vascular physiology at the physics-chemistry-biology interface.
Q40186582Where do the platelets go? A simulation study of fully resolved blood flow through aneurysmal vessels

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