首页> 外文期刊>JSME International Journal. Series C, Mechanical Systems, Machine Elements and Manufacturing >Shear Stress Distribution on the Surface of Endothelial Cells during Flow-Induced Morphological Remodeling
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Shear Stress Distribution on the Surface of Endothelial Cells during Flow-Induced Morphological Remodeling

机译:流动诱导形态重构过程中内皮细胞表面的剪应力分布

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摘要

Morphological remodeling of endothelial cells that was induced by blood flow is considered an adaptive response to a mechanical stimulus. To determine the mechanisms of the response, we examined how shear stress on the surface of the same group of cells changed. The surface geometry of the cells was measured by confocal laser scanning microscopy, and the shear stress distribution on the measured cell surface was determined using the flow field simulated by computational fluid dynamics. When the cells, which were polygonal without alignment at the beginning of the flow exposure, elongated and aligned in the flow direction, the mean shear stress of the cells decreased with time. However, there were some cells whose mean shear stress was increased, and the morphological change of each cell was not always adaptive. The results show the importance of interaction with surrounding cells to the adaptive response as demonstrated in the endothelial layer.
机译:由血流诱导的内皮细胞的形态重塑被认为是对机械刺激的适应性反应。为了确定响应的机制,我们检查了同一组细胞表面的剪切应力如何变化。通过共聚焦激光扫描显微镜测量细胞的表面几何形状,并使用通过计算流体动力学模拟的流场确定在所测量的细胞表面上的剪切应力分布。当在流动暴露开始时未对准的多边形小室在流动方向上伸长并对准时,其平均剪切应力随时间减小。但是,有些细胞的平均切应力增加,并且每个细胞的形态变化并不总是适应性的。结果表明,如内皮层所示,与周围细胞相互作用对适应性反应的重要性。

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