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The Influence of Vectorcardiogram Orientation on the T/QRS Ratio Obtained Via Non-Invasive Fetal ECG

机译:心电图取向对通过无创胎儿心电图获得的T / QRS比的影响

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Non-invasive fetal electrocardiography (NI-FECG) is an emerging technology that demonstrates potential for providing novel physiological information compared to traditional ultrasound-based cardiotocography (CTG). However, few studies have investigated the reliability of signal features derived via this technique for diagnostic use.One feature of NI-FECG recordings proposed for the purpose of identifying fetal distress is the T/QRS ratio, which has been indicated to change in response to fetal hypoxia. As the T/QRS ratio measures characteristics of the heart’s electrical activity in 3D space (represented as the vectorcardiogram), it is critical to understand how changes in the vectorcardiogram orientation may influence the reliability of this feature.To study this influence, this work simulates NI-FECG recordings using eight finite element models of the maternal-fetal anatomy and calculates the T/QRS ratio for a range of vector-cardiogram orientations and sensor positions. To quantify the potential for T/QRS ratio estimation error in real world data, these results are compared to those observed in a homogeneous volume conductor model, as assumed by many existing signal processing techniques.Our results demonstrate that the fetal vectorcardiogram orientation has a significant influence on the reliability of the T/QRS ratio obtained via NI-FECG. Varying the vectorcardiogram orientation through a range of -30 to +30 degrees along each coordinate axis results in the potential for the T/QRS ratio to be underestimated by up to 94% and overestimated by up to 240% if a homogeneous volume conductor model is assumed. Furthermore, we find that the sensor positioning on the maternal abdomen strongly affects the range of the T/QRS ratio estimation error. These results confirm that further study must be undertaken to determine the relationship between the physiological and signal processing domains before utilizing the T/QRS ratio obtained via NI-FECG for diagnostic purposes.
机译:无创胎儿心电图(NI-FECG)是一项新兴技术,与传统的超声心动图(CTG)相比,它具有提供新型生理信息的潜力。但是,很少有研究调查通过该技术得出的信号特征在诊断中的可靠性。为识别胎儿窘迫而提出的NI-FECG记录的一个特征是T / QRS比率,已表明该比率会随着年龄的变化而变化。胎儿缺氧。由于T / QRS比率可测量3D空间中心脏电活动的特征(表示为矢量心电图),因此了解矢量心电图方向的变化可能如何影响此功能的可靠性至关重要。 NI-FECG记录使用了八个母婴解剖结构的有限元模型,并计算了一系列心电图方向和传感器位置的T / QRS比。为了量化现实数据中T / QRS比估计误差的可能性,将这些结果与在均质体积导体模型中观察到的结果进行了比较,正如许多现有信号处理技术所假定的那样。对通过NI-FECG获得的T / QRS比的可靠性的影响。沿每个坐标轴在30到+30度范围内改变矢量心电图的方向,如果使用均质的体积导体模型,则T / QRS比率可能被低估最多94%,而可能被高估最多240%假定。此外,我们发现传感器在孕妇腹部的位置强烈影响T / QRS比估计误差的范围。这些结果证实,在将通过NI-FECG获得的T / QRS比用于诊断目的之前,必须进行进一步的研究以确定生理和信号处理域之间的关系。

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