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An Optimal Control Approach to Modeling the Cardiovascular-Respiratory System: An Application to Orthostatic Stress

机译:心血管呼吸系统建模的最佳控制方法:在体位压力中的应用

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This paper introduces a model designed to study the cardiovascular-respiratory system and its control features. It has been previously applied to study several physiological situations and in this paper it will be applied to the simulation of the phenomenon of orthostatic stress. Ortho-static stress refers to stress placed on the cardiovascular system when the body is in the upright position as compared to the supine position. The model consists of cardiovascular and respiratory components and includes cardiovascular autoregulation, ventilation control, and the barore-flex loop. Instead of an explicit formula for calculating the control response from the pressures and blood gases, we use an optimal control. Steady state and dynamic model simulation is compared with experimental data we have collected using head up tilt (HUT) experiments. The simulations fit the measured data well and represent reasonable physiological values. This work also examines an important issue related to orthostatic stress experiments. The head up tilt experiment (where gravity creates extra pressure stress on the lower body) is to be distinguished from the lower body negative pressure (LBNP) experiment where the lower body is subject to reduced exterior air pressure. Both tests create blood volume shifts to the lower body but the two physiological conditions are not entirely equivalent. We discuss some of these issues and examine several aspects of implementation of orthostatically induced pressures.
机译:本文介绍了一种旨在研究心血管呼吸系统及其控制特征的模型。它先前已被用于研究几种生理情况,并且在本文中将被用于模拟体位应力现象。体位静态压力是指与仰卧位置相比,人体处于直立位置时施加在心血管系统上的压力。该模型由心血管和呼吸系统组成,包括心血管自动调节,通气控制和压力-弯曲循环。我们使用最佳控制来代替根据压力和血气计算控制响应的明确公式。将稳态和动态模型仿真与我们使用抬头倾斜(HUT)实验收集的实验数据进行比较。模拟很好地拟合了测量数据并代表了合理的生理值。这项工作还研究了与体位应力实验有关的重要问题。抬头倾斜实验(重力在下半身产生额外压力)与下半身负压(LBNP)实验有所区别,下半身负压实验使下半身的外部气压降低。两种测试都会使血液量转移到下半身,但是两种生理条件并不完全相同。我们讨论了其中一些问题,并研究了体位诱发压力实施的几个方面。

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