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An On-Chip Microfluidic System for Reproducing Blood Pressure and Wall Shear Stress Waveforms in Human Common Carotid Arteries *

机译:用于在人常见的颈动脉中再现血压和壁剪应力波形的片上微流体系统*

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Reproducing blood pressure (BP) and wall shear stress (WSS) in human common carotid arteries (HCCAs) under diverse physiological conditions is of importance for studying the effects of these hemodynamic stresses on the endothelial function in vitro. To date, microfluidics has emerged as a promising technology for replicating hemodynamic environments in the circulatory system in vitro. However, an on-chip microfluidic system which can precisely replicate the real hemodynamic stimuli has never been reported. In this paper, firstly, a lumped parameter hemodynamic model (LPHM) with a rectangular flat cell culture chamber design is proposed to describe the on-chip microfluidic system; secondly, the values for all the parameters of the proposed model are obtained by fitting the waveforms of the calculated BP and WSS in HCCAs; finally, an on-chip microfluidic system is designed based upon the structure diagram and parameters of the LPHM. The numerical simulation studies have demonstrated that the in vivo BP and WSS waveforms under either resting or exercise state can be precisely reproduced in the cell culture chamber of the designed on-chip microfluidic system.
机译:在不同生理条件下,在人类常见的颈动脉(HCCAs)中再现血压(BP)和壁剪应力(WSS)对于研究这些血流动力学应力在体外内皮功能的影响是重要的。迄今为止,Microfluidics已成为在体外复制血液动力学环境的有希望的技术。然而,从未报道过芯片的微流体系统,可以精确复制真正的血流动力学刺激。在本文中,提出了一种具有矩形扁平电池培养室设计的集总参数血液动力学模型(LPHM)来描述片上微流体系统;其次,通过拟合HCCA中计算的BP和WSS的波形来获得所提出模型的所有参数的值;最后,基于LPHM的结构图和参数设计了片上微流体系统。数值模拟研究已经证明,在设计的片上微流体系统的细胞培养室中可以精确地再现在休息或运动状态下的体内BP和WSS波形。

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