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Validating lower extremity counterpulsation during CPR by computer simulated evolution

机译:通过计算机模拟演变来验证CPR期间的下肢反搏

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Nowadays the outcome of Cardiopulmonary Resusciation (CPR) is dismal. There has been some research showing that if lower extremity counterpulsation is applied during CPR, it might augment coronary perfusion pressure, which is the most important hemodynamic merit of CPR. But lower extremity counterpulsation has not been widely recognized and used during CPR yet. In this paper, a computer model was constructed to simulate hemodynamics of CPR. Based on this computer model and under two simple restrictions, computer simulated evolution was performed to get evolved waveforms for external pressures applied during CPR from randomly chosen waveforms. The results show that the pattern of lower extremity counterpulsation is embodied in the evolved waveforms, thus validating the use of lower extremity counterpulsation during CPR. Our simulation studies show that lower extremity counterpulsation might improve hemodynamics of CPR and deserves further research.
机译:如今,心肺复苏(CPR)的结果令人沮丧。有研究表明,如果在CPR期间应用下肢反搏,可能会增加冠脉灌注压力,这是CPR最重要的血液动力学价值。但是,下肢反搏在心肺复苏中尚未得到广泛认可和使用。在本文中,构建了计算机模型来模拟CPR的血流动力学。在此计算机模型的基础上,在两个简单的限制下,进行了计算机模拟演化,以从随机选择的波形中获取在CPR期间施加的外部压力的演化波形。结果表明,在进化的波形中体现了下肢反搏的模式,从而验证了CPR期间下肢反搏的使用。我们的模拟研究表明,下肢反搏可能会改善CPR的血流动力学,值得进一步研究。

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