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Electrophysiological imaging of volumetric infarct border using a spatio-temporal LP-norm constraint

机译:使用时空LP-范数约束的体积梗死边界的电生理成像

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Imaging the bioelectrical source distribution along the infarct border is of important therapeutic potential as infarct border is the common site for reentry circuits leading to life-threatening arrhythmias. Although it can be tackled by computational reconstruction of volumetric cardiac source using body-surface voltage data, the problem is notoriously ill-posed without a unique solution. Progress towards 3D cardiac source reconstruction is further hindered by the complex spatio-temporal property of cardiac current sources, which decides that common L1 and L2-norm constraints are not proper because the underlying assumption is either too focal or too smooth to reflect the property of the source distribution. In this work, we propose a general regularization with Lp-norm (1 < p < 2) constraint to bridge the gap between L1 and L2 solutions in cardiac source reconstruction along the infarct border. We further incorporate temporal information into Lp-norm constraint to promote consistency over time as well as robustness to noise. In a set of computer-simulated and real-data experiments, we demonstrate the superiority of the proposed method in reflecting the complex spatial structure of source distribution along 3D infarct border during the ST-segment of an ECG cycle, over L1 or L2 counterparts.
机译:成像沿梗塞边界的生物电源分布具有重要的治疗潜力,因为梗塞边界是折返回路的常见部位,可导致危及生命的心律不齐。尽管可以通过使用体表电压数据对体积心脏源进行计算重建来解决该问题,但是如果没有独特的解决方案,这个问题就非常糟糕。心脏电流源的复杂时空特性进一步阻碍了3D心脏源重建的进展,这决定了通用的L1和L2规范约束不合适,因为基本假设过于集中或过于平滑而无法反映出其特性。源分布。在这项工作中,我们提出了一个具有Lp范数(1

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