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ECG-Based Reconstruction of Heart Position and Orientation with Bayesian Optimization

机译:贝叶斯优化的基于心电图的心脏位置和方向重建

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摘要

Respiratory motion is known to cause beat-to-beat variation of the ECG. This observation suggests that it may be possible to use this variation to track position and orientation of the heart. Electrocardiographic Imaging (ECGI) would benefit from such a reconstruction since one contribution to errors in its solutions is respiratory motion of the heart. ECGI solutions generally rely on prior computation of a “forward” model that relates cardiac electrical activity to ECGs. However, the ill-posed nature of the inverse solution leads to large errors in ECGI even for small amounts of error in the forward model. The current work is a first step towards reducing those errors using a nominal forward model and the ECG itself. We describe a method that can reconstruct cardiac position / orientation using known potentials on both the heart and torso. Our current implementation is based on Bayesian Optimization and efficiently optimizes for the position / orientation of the heart to minimize error between measured and forward-computed torso potentials. We evaluated our approach with synthesized torso potentials under a model of respiratory motion and also using potentials recorded in a tank experiment on a canine epicardium and the tank surfaces. Our results show that our method performs accurately in synthetic experiments and can account for part of the error between forward-computed and measured ECGs in the tank experiments.
机译:已知呼吸运动会引起心电图的心跳变化。该观察结果表明,可以使用这种变化来跟踪心脏的位置和方向。心电图成像(ECGI)将受益于这种重建,因为其解决方案错误中的一个原因是心脏的呼吸运动。 ECGI解决方案通常依赖于将心脏电活动与ECG相关联的“转发”模型的预先计算。但是,反解的不适定性会导致ECGI出现较大的误差,即使正向模型中的误差很小。当前的工作是使用名义正向模型和ECG本身来减少这些错误的第一步。我们描述了一种可以使用心脏和躯干上的已知电位来重建心脏位置/方向的方法。我们当前的实现基于贝叶斯优化,可以有效地优化心脏的位置/方向,以最大程度地减小实测和正向计算的躯干电位之间的误差。我们在呼吸运动模型下使用合成的躯干电位评估了我们的方法,还使用了在坦克实验中在犬心外膜和坦克表面上记录的电位。我们的结果表明,我们的方法在合成实验中可以准确执行,并且可以解决坦克实验中正演计算的ECG与测量的ECG之间的部分误差。

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