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Forward and inverse problems of electrocardiography: modeling and recovery of epicardial potentials in humans

机译:心电图的正反问题:人类心外膜电位的建模和恢复

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To assess the accuracy of solutions to the inverse problem of electrocardiography in man, epicardial potentials computed from thoracic potential distributions were compared to potentials measured directly over the surface of the heart during arrhythmia surgery. Three-dimensional finite element models of the thorax with different mesh resolutions and conductivity inhomogeneities were constructed from serial computerized tomography scans of a patient. These torso models were used to compute transfer matrices relating the epicardial potentials to the thoracic potentials. Potential distributions over the torso and the ventricles were measured with 63 leads in the same patient whose anatomical data was used to construct the torso models. To solve the inverse problem, different methods based on Tykhonov regularization or regularization-truncation were applied. The recovered epicardial potential distributions closely resembled the epicardial potential distributions measured early during ventricular preexcitation, but not the more complex distributions measured later during the QRS complex. Several problems encountered as the validation process is applied in man are also discussed.
机译:为了评估人类心电图逆问题解决方案的准确性,将根据胸电位分布计算出的心外膜电位与在心律不齐手术期间直接在心脏表面测量的电位进行比较。通过对患者进行连续计算机断层扫描,构建了具有不同网格分辨率和电导率不均匀性的胸部三维有限元模型。这些躯干模型用于计算心外膜电势与胸廓电势相关的传递矩阵。在同一患者中使用63根导线测量了躯干和心室的电位分布,该患者的解剖学数据用于构建躯干模型。为了解决反问题,应用了基于Tykhonov正则化或正则截断的不同方法。恢复的心外膜电势分布与心室预激期间早期测得的心外膜电势分布非常相似,但与QRS复合波后期测得的更复杂的心电图分布并不相似。还讨论了将验证过程应用于人时遇到的几个问题。

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