首页> 外文会议>Engineering in Medicine and Biology Society, 2004. IEMBS '04. 26th Annual International Conference of the IEEE >Effects of cardiovascular parameter changes on heart rate variability: analysis by a mathematical model of short-term cardiovascular regulation
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Effects of cardiovascular parameter changes on heart rate variability: analysis by a mathematical model of short-term cardiovascular regulation

机译:心血管参数变化对心率变异性的影响:通过短期心血管调节的数学模型进行分析

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A mathematical model of short-term cardiovascular regulation is used to investigate how heart period power spectrum reflects alterations in cardiovascular parameters. The model includes the pulsating heart, the systemic and pulmonary circulation, the mechanical effects of respiration on hemodynamics, two groups of receptors (arterial baroreceptors and lung-stretch receptors), the sympathetic and vagal efferent branches, several distinct effectors, and a very low frequency vasomotor noise. All parameters in the model are assigned on the basis of the physiological literature. With basal parameter values, the simulated heart period (HP) power spectrum exhibits a high frequency (HF) peak, synchronous with respiration (0.2 Hz) and a smaller low frequency (LF) component around 0.1 Hz. Model results stress that the features of the HP spectrum are influenced by several factors, other than strength and integrity of autonomic nervous system. In particular, sensitivity analyses reveal that alterations in total peripheral resistance and in left ventricle contractility affect HP spectrum markedly, by causing a change in the working point of the autonomic control mechanisms. The model may be useful in the physiopathological interpretation of heart rate variability, to relate changes in HP spectrum with autonomic and/or cardiovascular perturbations.
机译:短期心血管调节的数学模型用于研究心周期功率谱如何反映心血管参数的变化。该模型包括搏动的心脏,全身和肺循环,呼吸对血流动力学的机械作用,两组受体(动脉压力感受器和肺舒张感受器),交感和迷走神经传出分支,几个​​不同的效应器以及一个非常低的效应器。频率血管舒缩噪声。模型中的所有参数都是根据生理文献分配的。利用基本参数值,模拟的心动周期(HP)功率谱显示出与呼吸(0.2 Hz)同步的高频(HF)峰值和约0.1 Hz的较小的低频(LF)分量。模型结果强调,HP光谱的特征受自主神经系统的强度和完整性以外的其他因素影响。特别是,敏感性分析表明,通过引起自主控制机制工作点的改变,总外周阻力和左心室收缩力的改变会显着影响HP频谱。该模型可用于心率变异性的生理病理学解释中,以将HP频谱的变化与自主神经和/或心血管扰动联系起来。

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