首页> 外文会议>ASME summer bioengineering conference;SBC2012 >IMAGE-BASED COMPUTATIONAL HEMODYNAMICS AND MICROARRAY ANALYSIS OF THE PORCINE AORTIC ARCH REVEALS A CORRELATION BETWEEN SHEAR STRESS AND ENDOTHELIAL CELL APOPTOSIS
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IMAGE-BASED COMPUTATIONAL HEMODYNAMICS AND MICROARRAY ANALYSIS OF THE PORCINE AORTIC ARCH REVEALS A CORRELATION BETWEEN SHEAR STRESS AND ENDOTHELIAL CELL APOPTOSIS

机译:猪主动脉弓的基于图像的计算血流动力学和微阵列分析与剪切应力和内皮细胞凋亡之间的关系

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Atherosclerosis is a focal disease that occurs predominantly at regions of the arterial tree that are exposed to disturbed blood flow, which generates low, oscillatory wall shear stress (WSS) at the lumen. WSS controls the spatial distribution of lesions by influencing numerous aspects of endothelial cell (EC) physiology, including inflammatory activation and viability. Of particular note, ECs in low shear, lesion-prone regions are characterized by increased apoptosis and turnover rates1 thus providing a potential explanation for the distinct spatial localization of lesion formation. Although the molecular mechanisms underlying the effects of WSS on EC physiology are poorly understood, they are known to involve transcriptional changes.
机译:动脉粥样硬化是一种局灶性疾病,主要发生在暴露于紊乱血流的动脉树区域,该区域在管腔处产生低的振荡壁切应力(WSS)。 WSS通过影响内皮细胞(EC)生理的许多方面(包括炎症激活和生存能力)来控制病变的空间分布。特别值得注意的是,低剪切,易发病变区域的ECs的特征是细胞凋亡和周转率增加1,从而为病灶形成的独特空间定位提供了可能的解释。尽管对WSS影响EC生理的潜在分子机制了解甚少,但已知它们涉及转录变化。

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