What is needed to make low-density lipoprotein transport in human aorta computational models suitable to explore links to atherosclerosis? Impact of initial and inflow boundary conditions

Author:

De Nisco Giuseppe,Zhang Peng,Calò Karol,Liu Xiao,Ponzini Raffaele,Bignardi Cristina,Rizzo Giovanna,Deng Xiaoyan,Gallo Diego,Morbiducci Umberto

Publisher

Elsevier BV

Subject

Rehabilitation,Biomedical Engineering,Orthopedics and Sports Medicine,Biophysics

Reference36 articles.

1. Development of a patient-specific multi-scale model to understand atherosclerosis and calcification locations: comparison with in vivo data in an aortic dissection;Alimohammadi;Front. Physiol.,2016

2. Atheroma and arterial wall shear. Observation, correlation and proposal of a shear dependent mass transfer mechanism for atherogenesis;Caro;Proc. Roy. Soc. London B: Biol. Sci.,1971

3. Experimental validation of convection-diffusion discretisation scheme employed for computational modelling of biological mass transport;Carroll;Biomed. Eng. Online,2010

4. Numerical investigation of mass transport through patient-specific deformed aortae;Chen;J. Biomech.,2014

5. Localization of atherosclerosis in arterial junctions. Modeling the release rate of low density lipoprotein and its breakdown products accumulated in blood vessel walls;Deng;ASAIO J. (Am. Soc. Artif. Internal Organs),1993

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