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Computational fluid dynamics modeling of momentum transport in rotating wall perfused bioreactor for cartilage tissue engineering

机译:用于软骨组织工程的旋转壁灌注生物反应器中动量传输的计算流体动力学建模

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In this study, computational fluid dynamics (CFD) analysis of a rotating-wall perfused-vessel (RWPV) bioreactor is performed to characterize the complex hydrodynamic environment for the simulation of cartilage development in RWPV bioreactor in the presence of tissue-engineered cartilage constructs, i.e., cell-chitosan scaffolds. Shear stress exerted on chitosan scaffolds in bioreactor was calculated for different rotational velocities in the range of 33-38 rpm. According to the calculations, the lateral and lower surfaces were exposed to 0.07926-0.11069 dyne/cm(2) and 0.05974-0.08345 dyne/cm(2), respectively, while upper surfaces of constructs were exposed to 0.09196-0.12847 dyne/cm(2). Results validate adequate hydrodynamic environment for scaffolds in RWPV bioreactor for cartilage tissue development which concludes the suitability of operational conditions of RWPV bioreactor
机译:在这项研究中,进行了旋转壁灌注容器(RWPV)生物反应器的计算流体动力学(CFD)分析,以表征复杂的流体动力学环境,以模拟在存在组织工程软骨构造的情况下RWPV生物反应器中的软骨发育,即细胞壳聚糖支架。对于在33-38 rpm范围内的不同旋转速度,计算了施加在生物反应器中壳聚糖支架上的剪切应力。根据计算,侧面和下表面分别暴露于0.07926-0.11069达因/厘米(2)和0.05974-0.08345达因/厘米(2),而构造体的上表面则暴露于0.09196-0.12847达因/厘米(2)。 2)。结果验证了RWPV生物反应器中支架对软骨组织发育的足够的流体力学环境,从而得出RWPV生物反应器的操作条件的适用性的结论。

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