首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Evaluating the effective shear modulus of the cytoplasm in cultured myoblasts subjected to compression using an inverse finite element method.
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Evaluating the effective shear modulus of the cytoplasm in cultured myoblasts subjected to compression using an inverse finite element method.

机译:使用逆有限元方法评估受压培养的成肌细胞中细胞质的有效剪切模量。

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In the present study, we employ our recently developed confocal microscopy-based cell-specific finite element (FE) modeling method, which is suitable for large deformation analyses, to conduct inverse FE analyses aimed at determining the shear modulus of the cytoplasm of cultured skeletal myoblasts, G(cp), and its variation across a number of cells. We calibrate these cell-specific models against experimental data describing the force-deformation behavior of the same cell type, which were published by Peeters et al. (2005b) [J. Biomech.]. The G(cp) calculated for five different myoblasts were contained in the range of 0.8-2.4 kPa, with the median value being 1 kPa, the mean being 1.4 kPa, and the standard deviation being 0.7 kPa. The normalized sum of squared errors resulting from the fit between experimental and calculated force-deformation curves ranged between 0.12-0.73%, and Pearson correlations for all fits were greater than 0.99. Determining the mechanical properties of the cytoplasm through cell-specific FE will now allow calculation of cell stresses using cell-specific FE under various cell loading configurations, in support of experimental work in cellular mechanics.
机译:在本研究中,我们采用我们最近开发的基于共聚焦显微镜的细胞特异性有限元(FE)建模方法,该方法适用于大变形分析,从而进行反向FE分析,旨在确定培养骨骼肌细胞质的剪切模量。成肌细胞G(cp)及其在许多细胞中的变异。我们根据描述相同细胞类型的力-变形行为的实验数据对这些特定于细胞的模型进行校准,这些数据由Peeters等人发表。 (2005b)[J.生物机械。计算出的五种不同成肌细胞的G(cp)介于0.8-2.4 kPa,中位数为1 kPa,平均值为1.4 kPa,标准偏差为0.7 kPa。由实验和计算出的力-变形曲线之间的拟合得出的平方误差的归一化总和在0.12-0.73%之间,并且所有拟合的Pearson相关性均大于0.99。通过细胞特异性有限元测定细胞质的机械性质,现在可以在各种细胞负载配置下使用细胞特异性有限元来计算细胞应激,以支持细胞力学的实验工作。

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