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An in Vitro Circulatory Device for Studying Blood Flow Electrical Impedance in Human Common Carotid Arteries

机译:一种用于研究人常见的颈动脉血流电阻抗的体外循环装置

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To study the blood flow electrical impedance in human common carotid arteries in vitro, a circulatory device simulating the arterial pulsatile blood flow is designed and fabricated. Using the detected physiological blood pressure and flow rate waveforms, a five-element lumped parameter model is established, in which the real blood pressure waveform at the common carotid artery and the input impedance of downstream cerebrovascular bed are set as simulated targets. Based on the model, the parameter values of each component are determined using the trial and error method. Furthermore, the feasibility analysis is performed with the software Simulink. Finally, corresponding to the values of each component, appropriate elements are selected to construct the circulatory device in vitro for simulating the blood pulsatile blood flow at the common carotid artery. The results indicate that the circulatory device can generate stable pressure and impedance waveforms similar to the physiological cases. The circulatory device provides an ideal experimental platform for further studying the blood flow electrical impedance in human common carotid artery in vitro.
机译:为了在体外研究人常见的颈动脉中的血流电阻抗,设计并制造了模拟动脉脉动血流的循环装置。使用检测到的生理血压和流速波形,建立了五元素集成参数模型,其中常见的颈动脉处的真实血压波形和下游脑血管床的输入阻抗被设定为模拟靶标。基于该模型,使用试验和错误方法确定每个组件的参数值。此外,使用Simulink进行可行性分析。最后,对应于每个组分的值,选择适当的元件以在体外构建循环装置,用于模拟常见的颈动脉处的血液脉动血液流动。结果表明,循环装置可以产生类似于生理病例的稳定压力和阻抗波形。循环装置提供了一种理想的实验平台,用于进一步研究人类常见的颈动脉中的血流电阻抗。

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