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Hemodynamika pomocou CFD×Model Windkessel×
OdborBiomechanikaBiomechanika
RodinaProcess / pipelineProcess / pipeline
Rok vzniku20021969
TvorcaDavid SteinmanNikolaos Westerhof
TypMulti-physics finite element simulationPhysiological lumped-parameter modeling
Pôvodný zdrojSteinman, D. A., Vinh, B., Ethier, C. R., Ojha, M., Cobbold, R. S., & Johnston, K. W. (2002). A numerical simulation of flow in a two-dimensional end-to-side anastomosis model. Journal of Biomechanical Engineering, 115(1), 112-118. link ↗Westerhof, N., Bosman, F., De Vries, N. C., & Noordergraaf, A. (1969). Analog studies of the human systemic arterial tree. Journal of Biomechanics, 2(2), 121-143. DOI ↗
Ďalšie názvyCardiovascular CFD, Blood flow simulation, Hemodynamic simulationElastic chamber model, Arterial compliance model, Lumped parameter model
Príbuzné33
ZhrnutieComputational fluid dynamics (CFD) for hemodynamics solves the Navier-Stokes equations to simulate blood flow in realistic vascular geometries. Pioneered by researchers such as David Steinman, CFD hemodynamics reveals complex flow patterns, wall shear stress distributions, and hemodynamic factors implicated in atherosclerosis, aneurysm rupture, and device-induced thrombosis.The Windkessel model is a lumped-parameter representation of the arterial system that captures the pulsatile dynamics of blood flow and pressure using simple mechanical analogs (resistors and capacitors). Named after the German word for air chamber, it was formalized by Westerhof and colleagues in the late 1960s and remains fundamental to understanding arterial hemodynamics and blood pressure regulation.
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ScholarGatePorovnať metódy: CFD Hemodynamics · Windkessel Model. Získané 2026-06-18 z https://scholargate.app/sk/compare