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A unified point process framework for assessing heartbeat dynamics and cardiovascular control

机译:评估心跳动态和心血管控制的统一点过程框架

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We present a unified probabilistic point process framework to estimate and monitor the instantaneous heartbeat dynamics as related to specific cardiovascular control mechanisms and hemodynamics. Assessment of the model's statistics is established through the Wiener-Volterra theory and a multivariate autoregressive (AR) structure. A variety of instantaneous cardiovascular metrics, such as heart rate (HR), heart rate variability (HRV), respiratory sinus arrhythmia (RSA), and baroreceptor-cardiac reflex (baroreflex), can be rigorously derived within a parametric framework and instantaneously updated with an adaptive algorithm. Nonlinearity metrics, as well as the bispectrum of heartbeat intervals, can also be derived. We have applied the proposed point process framework to a number of recordings under different experimental protocols. Results reveal interesting dynamic trends across different posture/pharmacological/age/ heart disease conditions, pointing at our mathematical approach as a promising monitoring tool for an accurate, noninvasive assessment of a large spectrum of cardiovascular diseases and disorders, including hypertension and congestive heart disease.
机译:我们提出了一个统一的概率点过程框架,以估计和监视与特定心血管控制机制和血液动力学有关的瞬时心跳动力学。通过Wiener-Volterra理论和多元自回归(AR)结构建立对模型统计量的评估。可以在参数框架内严格导出各种即时心血管指标,例如心率(HR),心率变异性(HRV),呼吸道窦性心律不齐(RSA)和压力感受器-心脏反射(baroreflex),并使用自适应算法。非线性度量以及心跳间隔的双频谱也可以导出。我们已经将提出的点过程框架应用于不同实验协议下的许多记录。结果揭示了不同姿势/药理学/年龄/心脏病状况之间有趣的动态趋势,这表明我们的数学方法是一种有前途的监测工具,可用于对各种心血管疾病和病症(包括高血压和充血性心脏病)进行准确,无创的评估。

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