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An optimal control approach for blood pressure regulation during head-up tilt

机译:抬头倾斜期间血压调节的最优控制方法

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This paper presents an optimal control approach to modeling effects of cardiovascular regulation during head-up tilt (HUT). Many patients who suffer from dizziness or light-headedness are administered a head-up tilt test to explore potential deficits within the autonomic control system, which maintains the cardiovascular system at homeostasis. This system is complex and difficult to study in vivo, and thus we propose to use mathematical modeling to achieve a better understanding of cardiovascular regulation during HUT. In particular, we show the feasibility of using optimal control theory to compute physiological control variables, vascular resistance and cardiac contractility, quantities that cannot be measured directly, but which are useful to assess the state of the cardiovascular system. A non-pulsatile lumped parameter model together with pseudo- and clinical data are utilized in the optimal control problem formulation. Results show that the optimal control approach can predict time-varying quantities regulated by the cardiovascular control system. Our results compare favorable to our previous study using a piecewise linear spline approach, less a priori knowledge is needed, and results were obtained at a significantly lower computational cost.
机译:本文提出了一种最佳的控制方法,以在倾斜(小屋)中心血管调节的建模效果。许多患有头晕或光上升的患者进行了抬头倾斜试验,以探讨自主控制系统内的潜在缺陷,它在稳态化上维持心血管系统。该系统复杂且难以体内学习,因此我们建议使用数学建模来实现小屋期间对心血管调节的更好理解。特别是,我们展示了使用最佳控制理论来计算生理控制变量,血管阻力和心脏收缩性,不能直接测量的量的可行性,但是评估心血管系统的状态是有用的。在最佳控制问题的制定中利用了与伪和临床数据一起的非脉动集总参数模型。结果表明,最佳控制方法可以预测心血管控制系统调节的时变量。我们的结果比较我们以前的研究使用分段线性样条方法,较少需要先验知识,并且以显着较低的计算成本获得结果。

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