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Autonomic-Cardiorespiratory Regulation: A Physiology-Based Mathematical Model

机译:自主 - 心肺规则:基于生理学的数学模型

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This paper presents a novel physiology-based mathematical model of autonomic-cardiorespiratory regulation described by a set of three nonlinear, coupled differential equations. We improved our previously proposed autonomic-cardiac regulation model by considering neuromechanical and mechanical coupling of cardiovascular and respiration systems including lung stretch-receptor reflex and venous return variation. We also introduced a differential equation describing respiration rate regulation which mainly originates in the medullary respiratory center. The results of simulation experiments suggest that the venous return variation generates a higher perturbation on heart rate and blood pressure than lung stretch-receptor reflex. The proposed model is also powerful in determining and removing direct respiratory impacts on parasympathetic activation tone to accurately extract parasympathetic activity caused by emotional states and environmental conditions.
机译:本文介绍了一组三个非线性,耦合微分方程所描述的自主神经 - 心肺调节基于新的基于生理学的数学模型。我们通过考虑心血管和呼吸系统的神经力学和机械耦合来改善先前提出的自主主义的心脏调节模型,包括肺部拉伸受体反射和静脉回流变异。我们还介绍了描述呼吸率调节的微分方程,主要来自髓质呼吸中心。仿真实验结果表明,静脉回料变化会产生比肺拉伸受体反射的心率和血压更高的扰动。该拟议的模型在确定和去除副交感神经激活调的直接呼吸冲击方面也是强大的,以准确提取由情绪状态和环境条件引起的副交感神经活动。

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