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Techniques for automated local activation time annotation and conduction velocity estimation in cardiac mapping

机译:心脏作图中自动局部激活时间注释和传导速度估计的技术

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摘要

Measurements of cardiac conduction velocity provide valuable functional and structural insight into the initiation and perpetuation of cardiac arrhythmias, in both a clinical and laboratory context. The interpretation of activation wavefronts and their propagation can identify mechanistic properties of a broad range of electrophysiological pathologies. However, the sparsity, distribution and uncertainty of recorded data make accurate conduction velocity calculation difficult. A wide range of mathematical approaches have been proposed for addressing this challenge, often targeted towards specific data modalities, species or recording environments. Many of these algorithms require identification of activation times from electrogram recordings which themselves may have complex morphology or low signal-to-noise ratio. This paper surveys algorithms designed for identifying local activation times and computing conduction direction and speed. Their suitability for use in different recording contexts and applications is assessed.
机译:在临床和实验室环境下,对心脏传导速度的测量都可提供有价值的功能和结构洞察力,以了解心律失常的发生和持续。激活波阵面及其传播的解释可以确定广泛的电生理病理学的机械特性。然而,记录数据的稀疏性,分布性和不确定性使精确的传导速度计算变得困难。已经提出了广泛的数学方法来应对这一挑战,通常针对特定的数据模式,物种或记录环境。这些算法中的许多算法都需要从电描记记录中识别激活时间,而电描记记录本身可能具有复杂的形态或低信噪比。本文调查了旨在识别局部激活时间并计算传导方向和速度的算法。评估了它们在不同录制环境和应用中的适用性。

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