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Magnetocardiography did not uncover electrically silent ischemia in an in-silico study case

机译:在一个计算机内的研究案例中,心磁图未发现电性沉默缺血

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Over the last decades, the information content derived from cardiac electric and magnetic field measurements has been debated. Our co-workers Wilhelms et al. investigated electrically silent acute ischemia in human ventricles caused by occlusion of a coronary artery. In the present work, we extend the previous study by calculating associated magnetic fields produced by early stage acute ischemia with varying transmural extent. Multiscale computational simulations were performed for calculations of body surface potential maps (BSPM) and magnetocardiograms (MCG) on a magnetometer sensor matrix situated above the anterior chest wall. Depending on the ischemia size, the ST-segments of the simulated electrocardiograms (ECG) experienced depression for subendocardial cases and elevation for transmural ischemia. One intermediate extent resulted in a zero ST-segment which makes it diagnostically indistinguishable from the healthy case. Magnetic field calculations for this electrically silent ischemia also revealed no difference compared to the control case. Otherwise, both ECG and MCG signals during ST-segments showed either depression or elevation from zero line. In this simulation study, MCG did not deliver additional information to uncover electrically silent ischemia. For a general conclusion, further in-silico investigations with different ischemia shapes, sizes and positions should be performed and clinical studies with recordings of both ECG and MCG signals have to be conducted.
机译:在过去的几十年中,有关从心脏电场和磁场测量得出的信息内容一直存在争议。我们的同事Wilhelms等。研究了由冠状动脉闭塞引起的人心室电沉默急性缺血。在当前的工作中,我们通过计算早期急性缺血产生的不同透壁程度的相关磁场来扩展先前的研究。进行了多尺度计算模拟,以计算位于前胸壁上方的磁力计传感器矩阵上的体表电位图(BSPM)和心电图(MCG)。根据缺血的大小,模拟心电图(ECG)的ST段在心内膜下病例中经历压抑,而在透壁缺血中则升高。一个中间程度导致ST段为零,这使其在诊断上与健康病例没有区别。与对照组相比,这种电沉默缺血的磁场计算也没有发现差异。否则,ST段期间的ECG和MCG信号均显示为从零线下降或升高。在此模拟研究中,MCG并未提供其他信息来揭示电沉默性缺血。总的结论是,应进行进一步的具有不同缺血形状,大小和位置的计算机模拟研究,并且必须进行记录ECG和MCG信号的临床研究。

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