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In-vivo validation of a new non-invasive continuous ventricular stroke volume monitoring system in an animal model

机译:在动物模型中新的非侵入性连续心室中风量监测系统的体内验证

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IntroductionRecently, a non-invasive, continuous ventricular stroke volume monitoring system using skin electrodes has been developed. In contrast to impedance-based methods, the new technique (ventricular field recognition) enables measurement of changes in ventricular volume. A prototype using this new method was built (the hemologic cardiac profiler, HCP) and validated against a reference method in a pig model during variations in cardiac output.MethodsIn six Dalland pigs, cardiac output was simultaneously measured with the HCP (CO-HCP), and an invasive ultrasonic flow-probe around the ascending aorta (CO-FP). Variations in CO were achieved by change in ventricular loading conditions, cardiac pacing, and dobutamine administration. Data were analysed according to Bland-Altman analysis and Pearson's correlation.ResultsPearson's correlation between the CO-HCP and the CO-FP was r = 0.978. Bland-Altman analysis showed a bias of - 0.114 L/minute, and a variability of the bias (2 standard deviations, 2SD) of 0.55 L/minute.ConclusionsThe results of the present study demonstrate that CO-HCP is comparable to CO-FP in an animal model of cardiac output measurements during a wide variation of CO. Therefore, the HCP has the potential to become a clinical applicable cardiac output monitor.
机译:简介最近,开发了一种使用皮肤电极的无创连续心室搏动量监测系统。与基于阻抗的方法相比,新技术(心室视野识别)可以测量心室容积的变化。建立了使用这种新方法的原型(血液学心脏轮廓仪,HCP),并在心输出量变化期间针对猪模型中的参考方法进行了验证。方法在六只达兰猪中,同时使用HCP(CO-HCP)测量心输出量以及升主动脉周围的侵入性超声血流探头(CO-FP)。通过改变心室负荷状况,心脏起搏和多巴酚丁胺的给药可以实现一氧化碳的变化。根据Bland-Altman分析和Pearson相关性分析数据。结果CO-HCP与CO-FP之间的Pearson相关性为r = 0.978。 Bland-Altman分析显示偏差为-0.114 L /分钟,偏差的变异性(2个标准偏差,2SD)为0.55 L /分钟。结论本研究结果表明CO-HCP与CO-FP相当在广泛变化的CO期间测量心输出量的动物模型中。因此,HCP有潜力成为临床上适用的心输出量监测器。

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