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Multi-directional flow chamber: analysis of endothelial cell morphology dependence on differential shear forces 2nd joint conference of the IEEE engineering in medicine and biology society and the biomedical engineering society

机译:多向流量室:内皮细胞形态依赖性分析差动剪切力的IEEE工程与生物学协会的IEEE工程联合会议及生物医学工程学会

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A novel multi-directional flow chamber (MDFC) has been developed as an in vitro tool for testing endothelial cell (EC) responses to complex multidirectional flow patterns. It was developed to model fluid mechanical conditions associated with atherosclerotic prone sites. Experimental studies demonstrated that with multi-directional flow (shear stress vector produced by an axial and a rotational component) caused greater morphologic variability than unidirectional flow studies (shear stress vector produced solely by an axial component). For example, the SIN for a multi-directional flow study at a position within the MDFC, where the rotational and axial shear stress vectors are parallel and additive, showed significantly more cell elongation (SIN = 0.83 ± 0.17) than at the 'bottom' position, where the vectors were in opposite directions (SI{sub}N = 0.95 ± 0.23). The equivalent results in a unidirectional study showed no significant difference at these positions. Therefore, ECs within a single monolayer can respond differentially when exposed to regions with a variable force distribution.
机译:一种新的多向流量室(MDFC​​)被开发为用于测试内皮细胞(EC)对复杂多向流动模式的响应的体外工具。它是开发的,用于模拟与动脉粥样硬化易发位点相关的流体机械条件。实验研究表明,利用多向流(由轴向和旋转分量产生的剪切应力载体)引起了比单向流动研究更大的形态变异性(仅通过轴向组分制造的剪切应力载体)。例如,SIN用于在MDFC,其中旋转和轴向剪切应力矢量平行和添加剂内的位置处的多方向流动的研究中,表明显著多种细胞伸长率(SIN = 0.83±0.17)大于在“底部”载体相反的位置(Si {Sub} n = 0.95±0.23)。在单向研究中的等效结果显示在这些位置没有显着差异。因此,单个单层内的EC在暴露于具有可变力分布的区域时可以差异差异。

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