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首页> 外文期刊>Medical engineering & physics. >In-vitro investigation of the hemodynamic responses of the cerebral, coronary and renal circulations with a rotary blood pump installed in the descending aorta
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In-vitro investigation of the hemodynamic responses of the cerebral, coronary and renal circulations with a rotary blood pump installed in the descending aorta

机译:在下降主动脉中安装旋转血液泵的脑卒中血流动力学反应的体外研究

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This study investigates the hemodynamic responses of the cardiovascular system when a rotary blood pump is operating in the descending aorta, with a focus on the cerebral, coronary and renal autoregulation, using our in-house cardiovascular emulator. Several improvements have been made from our previous studies. A novel coronary system was developed to replicate the native coronary perfusion. Three pinch valves actuated by stepper motors were used to simulate the regional autoregulation systems of the native cerebral, coronary and renal circulations. A rotary pump was installed in the descending aorta, in series with the heart, and the hemodynamic responses of the cardiovascular system were investigated with a focus on cerebral, coronary and renal circulation over a wide range of pump rotor speeds. Experiments were performed twice, once with the autoregulation systems active and once with the autoregulation systems inactive, to reflect that there will be some impairment of autoregulatory systems in a patient with heart failure. It was shown that by increasing the rotor speed to 3000 rpm, the cardiac output was improved from 2.9 to 4.1 L/min as a result of an afterload reduction induced by the pressure drop upstream of the pump. The magnitudes of changes in perfusion in the cerebral, coronary and renal circulations were recorded with regional autoregulation systems active and inactive. (C) 2016 Published by Elsevier Ltd on behalf of IPEM.
机译:本研究调查了当旋转血管在下降主动脉中运行时心血管系统的血流动力学反应,注重使用我们内部心血管仿真器的脑,冠状动脉和肾自动调节。我们以前的研究已经提出了几种改进。开发了一种新型冠状动脉系统以复制天然冠状动脉灌注。由步进电机驱动的三个捏阀用于模拟天然脑,冠状动脉,冠状动脉和肾循环的区域自动调节系统。旋转泵安装在下降的主动脉中,串联与心脏串联,并研究了心血管系统的血流动力学响应,重点关注各种泵转子速度的脑,冠状动脉和肾循环。实验进行两次,一次用自动调节系统有效,一次用自动调节系统无效,反映出心力衰竭的患者在患者中会有一些损害。结果表明,通过将转子速度提高到3000rpm,由于泵上游压力下降引起的后载降低,心输出从2.9到4.1 L / min提高。通过活性和无效的区域自动调节系统记录脑,冠状动脉和肾循环中灌注变化的大小。 (c)2016年由elsevier有限公司发布代表IPEM。

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