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A Model Based Approach for Multi-lead ECG Array Layout Selection

机译:一种基于模型的多导联心电图阵列布局选择方法

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摘要

In this study an approach for testing electrode array schemes with respect to their ability to improve the resolution of methods for activation time imaging is proposed. First local linear dependency maps are computed using a virtual array method. These maps depict the torso surface areas where the body surface potential is most sensitive to changes in the transmembrane potential. The optimal number and position of the electrodes within the sensitive body surface regions was selected by constructing effort gain (EG) plots. Such a plot depicts the relative attainable rank of the leadfield matrix in relation to the increase in number of electrodes required to build the electrode array. From the sensitivity maps it was found that the BSP is most sensitive to changes in TMP on the upper left frontal and dorsal body surface. The EG analysis revealed that the optimal array meeting clinical requirements and improving the resolution of activation time imaging consists of 125 electrodes.
机译:在这项研究中,提出了一种测试电极阵列方案以提高激活时间成像方法分辨率的方法。使用虚拟数组方法来计算第一局部线性依赖性图。这些图描绘了身体表面电势对跨膜电势变化最敏感的躯干表面积。通过构建努力增益(EG)图来选择敏感身体表面区域内电极的最佳数量和位置。这样的曲线图描绘了相对于建立电极阵列所需的电极数量的增加,引线场矩阵的相对可达到的等级。从敏感性图发现,BSP对左上额额叶和背侧体表的TMP变化最敏感。 EG分析表明,满足临床要求并提高激活时间成像分辨率的最佳阵列由125个电极组成。

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