Mathematical modeling and parameter estimation of blood pressure oscillometric waveform

M. Forouzanfar, B. Balasingam, H. Dajani, V. Groza, M. Bolic, S. Rajan, E. Petriu
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引用次数: 22

Abstract

In this paper, a mathematical model for the blood pressure oscillometric waveform (OMW) is developed and a statespace approach using the extended Kalman filter (EKF) is proposed to adaptively estimate and track parameters of clinical interest. The OMW model is driven by a previously proposed pressure-lumen area model of the artery under the deflating cuff. The arterial lumen area is a function of vessel properties, the cuff pressure, and the arterial pressure. Over the deflation period, the arterial pressure causes lumen area oscillations while the deflating cuff pressure adds a slow-varying component to these oscillations. In the previous literature, it has been demonstrated that the oscillometric pulses are proportional to the arterial area oscillations. In this paper, the OMW is modeled as the difference between the whole lumen area model and the slow-varying component of the lumen area caused by the deflating cuff pressure. The OMW model is then represented in the statespace and the extended Kalman filter (EKF) is incorporated to estimate and track the time-varying model parameters during the cuff deflation period. The parameter tracking performance of the EKF is evaluated on a simulated noisy OMW.
血压振荡波形的数学建模与参数估计
本文建立了血压振荡波形(OMW)的数学模型,并提出了一种使用扩展卡尔曼滤波(EKF)的状态空间方法来自适应估计和跟踪临床感兴趣的参数。OMW模型是由先前提出的放气袖带下动脉的压力-腔面积模型驱动的。动脉管腔面积是血管特性、袖带压力和动脉压力的函数。在放气期间,动脉压力引起管腔区域振荡,而放气袖带压力为这些振荡增加了缓慢变化的成分。在以前的文献中,已经证明了振荡脉冲与动脉区域振荡成正比。在本文中,OMW被建模为整个管腔面积模型与由袖带放气压力引起的管腔面积慢变分量的差。然后在状态空间中表示OMW模型,并引入扩展卡尔曼滤波(EKF)来估计和跟踪袖带放气期间的时变模型参数。在一个模拟的带噪声OMW上对EKF的参数跟踪性能进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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