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Model of human cardiovascular system with a loop of autonomic regulation of the mean arterial pressure

机译:具有自主调节平均动脉压环路的人体心血管系统模型

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A model of human cardiovascular system is proposed which describes the main heart rhythm, the regulation of heart function and blood vessels by the autonomic nervous system, baroreflex, and the formation of arterial blood pressure. The model takes into account the impact of respiration on these processes. It is shown that taking into account nonlinearity and introducing the autonomous loop of mean arterial blood pressure in the form of self-oscillating time-delay system allow to obtain the model signals whose statistical and spectral characteristics are qualitatively and quantitatively similar to those for experimental signals. The proposed model demonstrates the phenomenon of synchronization of mean arterial pressure regulatory system by the signal of respiration with the basic period close to 10 seconds, which is observed in the physiological experiments. (C) 2016 American Society of Hypertension. All rights reserved.
机译:提出了一种人类心血管系统模型,该模型描述了主要的心律,自主神经系统对心脏功能和血管的调节,压力反射和动脉血压的形成。该模型考虑了呼吸对这些过程的影响。结果表明,考虑到非线性因素并以自振荡延时系统的形式引入平均动脉血压的自主环路,可以获取模型信号,该信号的统计和频谱特征在质量和数量上均与实验信号相似。 。所提出的模型通过生理周期中观察到的基本周期接近10秒的呼吸信号证明了平均动脉压调节系统的同步现象。 (C)2016美国高血压学会。版权所有。

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