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A Compact Mock Circulation Loop for the In Vitro Testing of Cardiovascular Devices

机译:紧凑的模拟循环回路,用于心血管设备的体外测试

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In vitro cardiovascular device performance evaluation in a mock circulation loop (MCL) is a necessary step prior to in vivo testing. A MCL that accurately represents the physiology of the cardiovascular system accelerates the assessment of the device's ability to treat pathological conditions. To serve this purpose, a compact MCL measuring 600?×?600?×?600?mm (L?×?W?×?H) was constructed in conjunction with a computer mathematical simulation. This approach allowed the effective selection of physical loop characteristics, such as pneumatic drive parameters, to create pressure and flow, and pipe dimensions to replicate the resistance, compliance, and fluid inertia of the native cardiovascular system. The resulting five-element MCL reproduced the physiological hemodynamics of a healthy and failing heart by altering ventricle contractility, vascular resistance/compliance, heart rate, and vascular volume. The effects of interpatient anatomical variability, such as septal defects and valvular disease, were also assessed. Cardiovascular hemodynamic pressures (arterial, venous, atrial, ventricular), flows (systemic, bronchial, pulmonary), and volumes (ventricular, stroke) were analyzed in real time. The objective of this study is to describe the developmental stages of the compact MCL and demonstrate its value as a research tool for the accelerated development of cardiovascular devices.
机译:模拟循环回路(MCL)中的体外心血管设备性能评估是体内测试之前的必要步骤。准确代表心血管系统生理的MCL可以加快对该设备治疗病理状况的能力的评估。为了达到这个目的,结合计算机数学模拟,构造了尺寸为600××600××600×600mm(L××W××H)的紧凑型MCL。这种方法允许有效地选择物理回路特性(例如气动驱动参数)来创建压力和流量,以及管道尺寸来复制天然心血管系统的阻力,顺应性和流体惯性。所得的五元素MCL通过改变心室收缩力,血管阻力/顺应性,心率和血管容量,再现了健康且衰竭心脏的生理血流动力学。还评估了患者间解剖变异的影响,例如间隔缺损和瓣膜疾病。实时分析心血管血流动力学压力(动脉,静脉,心房,心室),流量(全身,支气管,肺)和容量(心室,中风)。这项研究的目的是描述紧凑型MCL的发展阶段,并证明其作为加速心血管装置发展的研究工具的价值。

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