首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Effect of a degraded core on the mechanical behaviour of tissue-engineered cartilage constructs: a poro-elastic finite element analysis.
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Effect of a degraded core on the mechanical behaviour of tissue-engineered cartilage constructs: a poro-elastic finite element analysis.

机译:退化的核心对组织工程软骨构造的力学行为的影响:孔隙弹性有限元分析。

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摘要

The structure and functionality of tissue-engineered cartilage is determined by the tissue culture conditions and mechanical conditioning during growth. The quality of tissue-engineered cartilage can be evaluated using tests such as the confined compression test. Tissue-engineered cartilage constructs usually consist of an outer layer of cartilage and an inner core of either undeveloped cartilage or degrading scaffold material. A biphasic poro-elastic finite element model was used to demonstrate how such a core influences the reaction force-time curve obtained from a confined compression test. The finite element model predicted that higher volumes of degraded scaffold in the inner core would reduce the aggregate modulus calculated from the confined compression test and raised the estimate of tissue permeability. The predicted aggregate modulus reduced from 0.135 MPa, for a homogenous construct, to 0.068 MPa, for a construct that was only 70% cartilaginous. It was found that biphasic poro-elastic finitemodelling should be used in preference to a one-dimensional model that assumed homogeneity in estimating the properties of tissue-engineered cartilage.
机译:组织工程化软骨的结构和功能由组织培养条件和生长过程中的机械条件决定。组织工程软骨的质量可以使用诸如密闭压力测试之类的测试进行评估。组织工程化的软骨构造通常由软骨的外层和未发育的软骨或降解性支架材料的内核组成。使用两相孔隙弹性有限元模型来证明这种岩心如何影响从有限压缩试验获得的反作用力-时间曲线。有限元模型预测,内芯中降解支架的体积越大,将降低由压缩试验计算出的总模量,并增加对组织渗透性的估计。预测的总模量从均质构建体的0.135 MPa降低到仅软骨70%的构建体的0.068 MPa。发现在估计组织工程软骨的特性时,应优先使用假定为同质性的一维模型,而不应使用双相孔隙弹性有限模型。

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