动脉压力反射与高血压应激源之间的相互作用:一个数学模型

M.C. Melgers, C. A. Swenne, H. van de Vooren, E. E. van der Wall
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引用次数: 1

摘要

压力源加强交感神经的流出,从而增加心率和动脉血压。动脉压力反射的意义在于降低这种速率和压力变化。为了更好地理解高血压应激源和动脉压力反射之间的相互作用,我们开发了一个数学模拟模型,包括血流动力学部分、压力感受器部分和压力反射部分。生理或病理静息条件是模拟特定设置的自主神经张力参数和心脏搏量。迷走神经和交感压力反射的增益也可以设定。压力源是通过增加额外的交感神经流到心脏和外周阻力而引入的。心率和血压的反应有助于理解动脉压力反射是如何保护心脏和循环的。
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Interaction between the arterial baroreflex and a hypertensive stressor: a mathematical model
Stressors intensify sympathetic outflow, thus increasing heart rate and arterial blood pressure. The significance of the arterial baroreflex is to be found in reducing such rate and pressure changes. For a better understanding of the interaction between a hypertensive stressor and the arterial baroreflex we have developed a mathematical simulation model, consisting of a hemodynamic section, a baroreceptor section, and a baroreflex section. Physiological or pathological resting conditions are simulated by specific settings of the autonomic tone parameters and cardiac stroke volume. Also the vagal and sympathetic baroreflex gains can be set. A stressor is introduced by adding extra sympathetic outflow to the heart and peripheral resistance. The responses in heart rate and blood pressure help to understand how the arterial baroreflex protects the heart and circulation.
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