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Inverse localization of ischemia in a 3D realistic geometry: A level set approach

机译:在3D逼真的几何中进行局部缺血的逆定位:一种水平集方法

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The reconstruction of cardiac ischemic regions from body surface potential measurements (BSPMs) is usually performed at a single time instant which corresponds to the plateau or resting phase of the cardiac action potential. Using a different approach, we previously proposed a level set formulation that incorporates the knowledge of the cardiac excitation process in the inverse procedure, thus exploiting the spatio-temporal correlations contained in the BSPMs. In this study, we extend our inverse level-set formulation for the reconstruction of ischemic regions to 3D realistic geometries, and analyze its performance in different noisy scenarios. Our method is benchmarked against zero-order Tikhonov regularization. The inverse reconstruction of the ischemic region is evaluated using the correlation coefficient (CC), the sensitive error ratio (SN), and the specificity error ratio (SP). Our algorithm outperforms zero-order Tikhonov regularization, specially in highly noisy scenarios.
机译:根据体表电位测量值(BSPM)重建心脏缺血区域通常是在一个瞬间进行的,该瞬间对应于心脏动作电位的平稳期或静止期。使用不同的方法,我们先前提出了一个水平集公式,该公式在逆过程中结合了心脏激发过程的知识,从而利用了BSPM中包含的时空相关性。在这项研究中,我们将用于缺血区域重建的逆水平集公式扩展到3D逼真的几何形状,并分析了其在不同嘈杂情况下的性能。我们的方法以零阶Tikhonov正则化为基准。使用相关系数(CC),敏感错误率(SN)和特异性错误率(SP)评估缺血区域的逆向重建。我们的算法优于零阶Tikhonov正则化,尤其是在高噪声场景中。

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