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CFD 혈역학×FEA Bone Remodeling×
분야생체역학생체역학
계열Process / pipelineProcess / pipeline
기원 연도20021987
창시자David SteinmanRik Huiskes
유형Multi-physics finite element simulationMulti-physics finite element pipeline
원전Steinman, 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 ↗Huiskes, R., Weinans, H., Grootenboer, H. J., Dalstra, M., Fudala, B., & Slooff, T. J. (1987). Adaptive bone-remodeling theory applied to prosthetic-design analysis. Journal of Biomechanics, 20(11-12), 1135-1150. DOI ↗
별칭Cardiovascular CFD, Blood flow simulation, Hemodynamic simulationBone remodeling simulation, Trabecular architecture adaptation, Mechano-regulation
관련33
요약Computational 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.Finite element analysis (FEA) for bone remodeling predicts how bone tissue density and architecture adapt to changes in mechanical loading over time. Pioneered by Rik Huiskes and Donald Carter in the 1980s, this computational approach integrates stress analysis with biophysical remodeling rules to simulate the long-term response of bone to disease, aging, or surgical intervention.
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ScholarGate방법 비교: CFD Hemodynamics · FEA Bone Remodeling. 2026-06-17에 다음에서 검색함: https://scholargate.app/ko/compare