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全身血管参数的微创评估

Minimally invasive estimation of systemic vascular parameters.

作者信息

Yu Y C, Boston J R, Simaan M A, Antaki J F

机构信息

Department of Electrical and Computer Engineering, Lafayette College, Easton, PA 18042, USA.

出版信息

Ann Biomed Eng. 2001;29(7):595-606. doi: 10.1114/1.1380420.

Abstract

A cardiovascular parameter estimator to identify the systemic vascular parameters was developed using an extended Kalman filter (EKF) algorithm. Measurements from a ventricular assist device (VAD) and arterial pressure were used in the estimator. The systemic vascular parameters are important indices of heart condition. However, obtaining these parameters usually requires invasive measurements, which are difficult to obtain under most clinical environments. Including a VAD model into the estimator and using the signals from a VAD to identify the cardiovascular parameters for VAD patients would minimize the need for indwelling sensors. This paper illustrates the use of a Novacor left ventricular assist system (LVAS) model with a cardiovascular model in the estimator to identify the systemic vascular parameters: characteristic resistance, blood inertance at the aorta, systemic compliance, and systemic resistance. Performance of the estimator was evaluated using data from a computer simulation and from a mock circulatory system experiment. Robustness of the estimator to the available measurements was also described. The estimation results showed that the estimates converged with reasonable accuracy in a limited time when the LVAS pump volume and arterial pressure were used as measurements. These parameter estimates can provide additional diagnostic information for patient and device monitoring and can be used for future VAD control development.

摘要

利用扩展卡尔曼滤波器(EKF)算法开发了一种用于识别全身血管参数的心血管参数估计器。该估计器使用了心室辅助装置(VAD)的测量值和动脉压。全身血管参数是心脏状况的重要指标。然而,获取这些参数通常需要侵入性测量,而在大多数临床环境中很难进行这种测量。将VAD模型纳入估计器并使用VAD的信号来识别VAD患者的心血管参数,将最大限度地减少对留置传感器的需求。本文阐述了在估计器中使用带有心血管模型的诺瓦科尔左心室辅助系统(LVAS)模型来识别全身血管参数:特征阻力、主动脉处的血液惯性、全身顺应性和全身阻力。使用来自计算机模拟和模拟循环系统实验的数据对估计器的性能进行了评估。还描述了估计器对可用测量值的鲁棒性。估计结果表明,当将LVAS泵流量和动脉压用作测量值时,估计值在有限时间内以合理的精度收敛。这些参数估计可为患者和设备监测提供额外的诊断信息,并可用于未来VAD控制的开发。

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