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Effect of cardiac motion on body surface electrocardiographic potentials: an MRI-based simulation study

机译:心脏运动对体表心电图电位的影响:基于MRI的模拟研究

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This paper describes an electrical model of cardiac ventricles incorporating real geometry and motion. The heart anatomy and its motion through the cardiac cycle are obtained from segmentations of multiple-slice MRI time sequences; the special conduction system is constructed using an automated mapping procedure from an existing static heart model. The heart model is mounted in an anatomically realistic voxelmodel of the human body. The cardiac electrical source and surface potentials are determined numerically using both a finitedifference scheme and a boundary-element method with the incorporation of the motion of the heart. The electrocardiograms (ECG) and body surface potential maps are calculated and compared to the static simulation in the resting heart. The simulations demonstrate that introducing motion into the cardiac model modifies the ECG signals, with the most obvious change occurring during the T-wave at peak contraction of the ventricles. Body surface potential maps differ in some local positions during the T-wave, which may be of importance to a number of cardiac models, including those incorporating inverse methods.
机译:本文介绍了结合实际几何形状和运动的心室电模型。心脏解剖结构及其在整个心动周期中的运动是从多层MRI时间序列的分段中获得的。特殊传导系统是使用现有静态心脏模型中的自动映射程序构建的。心脏模型安装在人体的解剖学现实体素模型中。使用有限差分方案和结合了心脏运动的边界元方法在数值上确定心脏电源和表面电位。计算心电图(ECG)和体表电位图,并将其与静息心脏中的静态模拟进行比较。仿真表明,将运动引入心脏模型会修改ECG信号,最明显的变化发生在T波期间心室的峰值收缩处。体表电位图在T波期间的某些局部位置会有所不同,这对许多心脏模型(包括那些采用逆方法的心脏模型)可能很重要。

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