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健康受试者被动仰卧倾斜试验中心血管自主控制的数学建模。

Mathematical modeling of the cardiovascular autonomic control in healthy subjects during a passive head-up tilt test.

机构信息

Department of Innovative Cardiological Information Technology, Institute of Cardiological Research, Saratov State Medical University, Saratov, Russia.

Department of Surgical Treatment for Interactive Pathology, Bakulev Scientific Center for Cardiovascular Surgery, Moscow, Russia.

出版信息

Sci Rep. 2020 Oct 5;10(1):16525. doi: 10.1038/s41598-020-71532-7.

Abstract

A mathematical model is proposed for the autonomic control of cardiovascular system, which takes into account two separated self-exciting sympathetic control loops of heart rate and peripheral vascular tone. The control loops are represented by self-exciting time-delay systems and their tone depends on activity of the aortic, carotid, and lower-body baroreceptors. The model is used to study the dynamics of the adaptive processes that manifest in a healthy cardiovascular system during the passive head-up tilt test. Computer simulation provides continuous observation of the dynamics of the indexes and variables that cannot be measured in the direct experiment, including the noradrenaline concentration in vessel wall and heart muscle, tone of the sympathetic and parasympathetic control, peripheral vascular resistance, and blood pressure. In the supine and upright positions, we estimated the spectral characteristics of the model variables, especially in the low-frequency band, and the original index of total percent of phase synchronization between the low-frequency oscillations in heart rate and blood pressure signals. The model demonstrates good quantitative agreement with the dynamics of the experimentally observed indexes of cardiovascular system that were averaged for 50 healthy subjects.

摘要

提出了一种心血管自主控制系统的数学模型,该模型考虑了心率和外周血管张力的两个独立的自激发交感控制回路。控制回路由自激发时滞系统表示,其紧张度取决于主动脉、颈动脉和下半身压力感受器的活动。该模型用于研究健康心血管系统在被动头高位倾斜试验中表现出的自适应过程的动力学。计算机模拟提供了对在直接实验中无法测量的指标和变量的动态的连续观察,包括血管壁和心肌中的去甲肾上腺素浓度、交感和副交感控制的紧张度、外周血管阻力和血压。在仰卧和直立位置,我们估计了模型变量的谱特征,特别是在低频带,以及心率和血压信号低频振荡之间总相位同步百分比的原始指标。该模型与 50 名健康受试者平均的心血管系统实验观察指标的动力学具有很好的定量一致性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/481d/7536219/1fe6acc5e672/41598_2020_71532_Fig1_HTML.jpg

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