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Dynamic Assessment of Baroreflex Control of Heart Rate During Induction of Propofol Anesthesia Using a Point Process Method

机译:异丙酚麻醉诱导时心率的Baroreflex控制动态评价

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摘要

In this article, we present a point process method to assess dynamic baroreflex sensitivity (BRS) by estimating the baroreflex gain as focal component of a simplified closed-loop model of the cardiovascular system. Specifically, an inverse Gaussian probability distribution is used to model the heartbeat interval, whereas the instantaneous mean is identified by linear and bilinear bivariate regressions on both the previous R−R intervals (RR) and blood pressure (BP) beat-to-beat measures. The instantaneous baroreflex gain is estimated as the feedback branch of the loop with a point-process filter, while the RRBP feedforward transfer function representing heart contractility and vasculature effects is simultaneously estimated by a recursive least-squares filter. These two closed-loop gains provide a direct assessment of baroreflex control of heart rate (HR). In addition, the dynamic coherence, cross bispectrum, and their power ratio can also be estimated. All statistical indices provide a valuable quantitative assessment of the interaction between heartbeat dynamics and hemodynamics. To illustrate the application, we have applied the proposed point process model to experimental recordings from 11 healthy subjects in order to monitor cardiovascular regulation under propofol anesthesia. We present quantitative results during transient periods, as well as statistical analyses on steady-state epochs before and after propofol administration. Our findings validate the ability of the algorithm to provide a reliable and fast-tracking assessment of BRS, and show a clear overall reduction in baroreflex gain from the baseline period to the start of propofol anesthesia, confirming that instantaneous evaluation of arterial baroreflex control of HR may yield important implications in clinical practice, particularly during anesthesia and in postoperative care.
机译:在本文中,我们提出了一种点过程方法,通过估计作为心血管系统简化闭环模型的焦点部分的压力反射增益来评估动态压力反射敏感性(BRS)。具体而言,使用高斯逆概率分布对心跳间隔进行建模,而瞬时平均值通过之前的RR间隔(RR)和血压(BP)逐跳测量的线性和双线性双变量回归来识别。瞬时压力反射增益估计为带点过程滤波器的环路的反馈分支,而表示心脏收缩力和脉管系统效应的RRBP前馈传递函数同时由递归最小二乘滤波器估计。这两个闭环增益可直接评估压力反射性心率控制(HR)。另外,还可以估计动态相干性,交叉双谱及其功率比。所有统计指标都对心跳动力学和血液动力学之间的相互作用提供了有价值的定量评估。为了说明该应用,我们将拟议的点过程模型应用于来自11位健康受试者的实验记录,以监测异丙酚麻醉下的心血管调节。我们介绍了短暂时期的定量结果,以及对异丙酚给药前后稳态时期的统计分析。我们的发现证实了该算法提供可靠且快速跟踪的BRS评估的能力,并显示出从基线期到异丙酚麻醉开始的压力反射增益明显降低,从而证实了对动脉压力反射控制HR的即时评估在临床实践中可能会产生重要影响,尤其是在麻醉期间和术后护理中。

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