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Sensitivity analysis of cardiovascular models for minimally invasive estimation of systemic vascular parameters

机译:心血管模型的敏感性分析,可微创估算全身血管参数

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A sensitivity analysis technique was used to evaluate two simple cardiovascular models for model parameter estimation using minimal measurable signals. The purpose of this study is to determine a simple model, which can used with a left ventricular device (LVAD) model to identify the model parameters using signals from the LVAD, to characterize the systemic load. The control of the LVAD can then be adjusted based on patient's demand, represented by the systemic load, with minimum invasive sensors. The results obtained from the nominal parameter values of normal patients suggested that a model with a constant capacitance for the left atrium is suitable for parameter estimation if aortic pressure, aortic flow, and left atrial pressure are measurable. If only aortic pressure and flow are available, a simplified model, excluding the left atrium from the original model, provides more accurate estimates. An extended Kalman filter was used with computer simulation data to identify parameters of the models for verifying the results from the sensitivity analysis.
机译:灵敏度分析技术用于使用最小的可测量信号评估两个简单的心血管模型模型参数估计。本研究的目的是确定一个简单的模型,该模型可与左心室设备(LVAD)模型一起使用,以使用来自LVAD的信号来识别模型参数,以表征系统负荷。 LVAD的控制随后可以基于患者的需求进行调整,以全身性负荷为代表,并采用最少的侵入式传感器。从正常患者的标称参数值获得的结果表明,如果可测量主动脉压力,主动脉流量和左心房压力,则具有恒定容量的左心房模型适用于参数估计。如果只有主动脉压力和流量可用,则简化模型(从原始模型中排除左心房)将提供更准确的估计。扩展的卡尔曼滤波器与计算机仿真数据一起使用,以识别模型的参数,以验证灵敏度分析的结果。

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