急性心力衰竭对多巴胺的血流动力学反应建模

K. Gingrich, R. Roy, R. Vishnoi, C. Yu, G. Neat
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引用次数: 17

摘要

建立了急性缺血性心力衰竭对肌力药物多巴胺的血流动力学反应(心输出量和平均动脉压)的非线性描述SIMO模型,以方便闭环控制系统的设计。心输出分量的结构是一个具有s型关系的一阶系统,而平均动脉压分量是一个具有阈值的一阶系统。总的来说,该模型给出了很好的平均经验响应近似值。在犬急性缺血性心力衰竭模型中,多次(2 mcg/kg/min-6 mcg/min)输注多巴胺,对阳性步骤(开药)和阴性步骤(关药)测试进行参数识别。参数估计利用了最小二乘目标函数和时域模型阶跃响应的线性化形式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling the hemodynamic response to dopamine in acute heart failure
A nonlinear descriptive single-input-multiple-output (SIMO) model of the hemodynamic response (cardiac output and mean arterial pressure) in acute ischemic heart failure to the inotropic drug dopamine was developed to facilitate the design of closed-loop control systems. The structure of the cardiac-output component is a first order system with a sigmoidal relationship, while the mean-arterial-pressure component is a first-order system with a threshold. Overall, the model gave good approximations of mean empirical responses. Parameter identification was performed on positive step (drug on) and negative step (drug off) testing using multiple (2 mcg/kg/min-6 mcg/min) infusions of dopamine in a canine model of acute ischemic heart failure. Parameter estimation utilized a least-squares objective function and a linearized form of the step response of the model in the time domain.<>
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