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The effect of volume conductor modeling on the estimation of cardiac vectors in fetal magnetocardiography

机译:体导体模型对胎儿心动图估计心脏向量的影响

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Previous studies based on fetal magnetocardiographic (fMCG) recordings used simplified volume conductor models to estimate the fetal cardiac vector as an unequivocal measure of the cardiac source strength. However, the effect of simplified volume conductor modeling on the accuracy of the fMCG inverse solution remains largely unknown. Aiming to determine the sensitivity of the source estimators to the details of the volume conductor model, we performed simulations using fetalmaternal anatomical information from ultrasound images obtained in 20 pregnant women in various stages of pregnancy. The magnetic field produced by a cardiac source model was computed using the boundary-element method for a piecewise homogeneous volume conductor with three nested compartments (fetal body, amniotic fluid and maternal abdomen) of different electrical conductivities. For late gestation, we also considered the case of a fourth highly insulating layer of vernix caseosa covering the fetus. The errors introduced for simplified volume conductors were assessed by comparing the reconstruction results obtained with realistic versus spherically symmetric models. Our study demonstrates the significant effect of simplified volume conductor modeling, resulting mainly in an underestimation of the cardiac vector magnitude and low goodness-of-fit. These findings are confirmed by the analysis of real fMCG data recorded in mid-gestation.
机译:先前基于胎儿心电图(fMCG)记录的研究使用简化的体积导体模型来估计胎儿心脏向量,作为对心脏源强度的明确测量。但是,简化的体积导体建模对fMCG反解的精度的影响仍然未知。为了确定源估计器对体导体模型细节的敏感性,我们使用胎儿母亲的解剖学信息从20个处于不同怀孕阶段的孕妇中获得的超声图像进行了模拟。使用边界元素方法,针对具有三个不同电导率的嵌套隔室(胎儿,羊水和母体腹部)的分段均质体导体,使用边界元方法计算由心脏源模型产生的磁场。对于后期妊娠,我们还考虑了覆盖胎儿的第四种高度垂直的酪蛋白胎盘的情况。通过比较用现实模型和球对称模型获得的重建结果,可以评估为简化体积导体引入的误差。我们的研究表明简化体积导体建模的显著作用,主要是导致低估了心脏矢量幅度和低拟合优度。通过对妊娠中期记录的实际fMCG数据进行分析,证实了这些发现。

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