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Non-invasive reconstruction of dynamic myocardial transmembrane potential with graph-based total variation constraints

机译:基于曲线图的总变化约束的无侵入性重建动态心肌跨膜电位

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摘要

Non-invasive reconstruction of electrophysiological activity in the heart is of great significance for clinical disease prevention and surgical treatment. The distribution of transmembrane potential (TMP) in three-dimensional myocardium can help us diagnose heart diseases such as myocardial ischemia and ectopic pacing. However, the problem of solving TMP is ill-posed, and appropriate constraints need to be added. The existing state-of-art method total variation minimisation only takes advantage of the local similarity in space, which has the problem of over-smoothing, and fails to take into account the relationship among frames in the dynamic TMP sequence. In this work, the authors introduce a novel regularisation method called graph-based total variation to make up for the above shortcomings. The graph structure takes the TMP value of a time sequence on each heart node as the criterion to establish the similarity relationship among the heart. Two sets of phantom experiments were set to verify the superiority of the proposed method over the traditional constraints: infarct scar reconstruction and activation wavefront reconstruction. In addition, experiments with ten real premature ventricular contractions patient data were used to demonstrate the accuracy of the authors' method in clinical applications.
机译:心脏电生理活性的非侵入性重建对于临床疾病预防和手术治疗具有重要意义。三维心肌中的跨膜电位(TMP)的分布可以帮助我们诊断心肌缺血和异位起搏等心脏病。然而,解决TMP的问题是没有释放的,并且需要添加适当的约束。现有的最先进的方法总变化最小化仅利用空间中的局部相似性,这具有过平滑的问题,并且不能考虑动态TMP序列中的帧之间的关系。在这项工作中,作者介绍了一种新的正规化方法,称为基于图的总变化,以弥补上述缺点。图形结构采用每个心脏节点上的时间序列的TMP值作为建立心脏之间的相似关系的标准。设定了两组幻影实验,以验证在传统约束上提出的方法的优越性:梗塞瘢痕重建和激活波前重建。此外,使用10个真实过早性心室收集患者数据的实验用于证明作者在临床应用中的方法的准确性。

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