Time-recursive solution to the inverse problem of electrocardiography: a model-based approach

D. Joly, Y. Goussard, P. Savard
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引用次数: 34

Abstract

This paper presents a new approach to the estimation of epicardial potentials from measured body surface potentials. This problem is ill-posed, and regularization techniques, through incorporation of a priori information on the solution, provide an efficient way of improving the quality of the estimates. During a cardiac cycle, the time-evolution of the epicardial potentials presents a very structured character which is the consequence of underlying propagation phenomena. In order to account for this a priori information, we introduce a linear prediction model that explicitly relates the epicardial potentials at two consecutive time instants. The linear prediction model, along with the usual relationship between epicardial and body surface potentials, makes up a state-space representation of the system. Epicardial potentials can then be estimated using efficient time-recursive techniques such as Kalman filtering. Simulation results obtained with real epicardial data indicate the validity of the linear prediction model; comparison of the reconstructed epicardial potentials with those produced by existing methods confirm the interest of the ap-
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心电图逆问题的时间递归解:基于模型的方法
本文提出了一种由体表电位估计心外膜电位的新方法。这个问题是不适定的,而正则化技术,通过结合解决方案的先验信息,提供了一种提高估计质量的有效方法。在心脏周期中,心外膜电位的时间演变呈现出非常结构化的特征,这是潜在传播现象的结果。为了解释这一先验信息,我们引入了一个线性预测模型,明确地将两个连续时刻的心外膜电位联系起来。线性预测模型,以及心外膜和体表电位之间的通常关系,构成了系统的状态空间表示。心外膜电位然后可以使用有效的时间递归技术,如卡尔曼滤波估计。实际心外膜数据的仿真结果表明了线性预测模型的有效性;将重建的心外膜电位与现有方法产生的电位进行比较,证实了ap-的作用
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