A Point Process Approach to Assess Dynamic Baroreflex Gain.

Z Chen, En Brown, R Barbieri
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引用次数: 5

Abstract

Evaluation of arterial baroreflex in cardiovascular control is an important topic in cardiology and clinical medicine. In this paper, we present a point process approach to estimate the dynamic baroreflex gain in a closed-loop model of the cardiovascular system. Specifically, the inverse Gaussian probability distribution is used to model the heartbeat interval, whereas the instantaneous mean is modulated by a bivariate autoregressive model that contains the previous R-R intervals and systolic blood pressure (SBP) measures. The instantaneous baroreflex gain is estimated in the feedback loop with a point process filter, while the RR→SBP feedforward frequency response gain can be estimated by a Kalman filter. The proposed estimation approach provides a quantitative assessment of interacting heartbeat dynamics and hemodynamics. We validate our approach with real physiological signals and evaluate the proposed model with established goodness-of-fit tests.

评价动态气压反射增益的点过程方法。
评价动脉压力反射在心血管控制中的作用是心脏病学和临床医学的一个重要课题。本文提出了一种估计心血管系统闭环模型中动态压力反射增益的点过程方法。具体来说,使用逆高斯概率分布来模拟心跳间隔,而瞬时均值由包含先前R-R间隔和收缩压(SBP)测量的二元自回归模型调制。在反馈回路中,用点过程滤波器估计瞬时压反射增益,用卡尔曼滤波器估计RR→SBP前馈频响增益。所提出的估计方法提供了相互作用的心跳动力学和血流动力学的定量评估。我们用真实的生理信号验证了我们的方法,并用拟合优度测试评估了提出的模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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