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Blood pressure and blood flow variation during postural change from sitting to standing: model development and validation

机译:从坐到站的姿势变化期间的血压和血流量变化:模型开发和验证

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摘要

Short-term cardiovascular responses to postural change from sitting to standing involve complex interactions between the autonomic nervous system, which regulates blood pressure, and cerebral autoregulation, which maintains cerebral perfusion. We present a mathematical model that can predict dynamic changes in beat-to-beat arterial blood pressure and middle cerebral artery blood flow velocity during postural change from sitting to standing. Our cardiovascular model utilizes 11 compartments to describe blood pressure, blood flow, compliance, and resistance in the heart and systemic circulation. To include dynamics due to the pulsatile nature of blood pressure and blood flow, resistances in the large systemic arteries are modeled using nonlinear functions of pressure. A physiologically based submodel is used to describe effects of gravity on venous blood pooling during postural change. Two types of control mechanisms are included: 1) autonomic regulation mediated by sympathetic and parasympathetic responses, which affect heart rate, cardiac contractility, resistance, and compliance, and 2) autoregulation mediated by responses to local changes in myogenic tone, metabolic demand, and CO2 concentration, which affect cerebrovascular resistance. Finally, we formulate an inverse least-squares problem to estimate parameters and demonstrate that our mathematical model is in agreement with physiological data from a young subject during postural change from sitting to standing.
机译:从坐姿到站立姿势对姿势变化的短期心血管反应涉及调节血压的自主神经系统和维持脑灌注的大脑自动调节之间的复杂相互作用。我们提出了一个数学模型,该模型可以预测从坐到站的姿势变化过程中,逐次跳动的动脉血压和大脑中动脉血流速度的动态变化。我们的心血管模型利用11个隔室来描述血压,血流量,顺应性以及心脏和全身循环的阻力。为了包括由于血压和血流的脉动性质而引起的动力学,使用压力的非线性函数对大型全身动脉的阻力进行建模。基于生理的子模型用于描述姿势变化期间重力对静脉血池的影响。包括两种类型的控制机制:1)由交感和副交感反应介导的自主调节,影响心率,心脏收缩力,抵抗力和顺应性; 2)对肌原性音调,代谢需求和局部变化的响应介导的自主调节。 CO2浓度,影响脑血管抵抗力。最后,我们制定了最小二乘反问题来估计参数,并证明了我们的数学模型与从年轻受试者坐姿到站立姿势变化期间的生理数据一致。

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