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Detection of fetal kicks using body-worn accelerometers during pregnancy: Trade-offs between sensors number and positioning

机译:在怀孕期间使用身体磨损的加速度计检测胎儿踢球:传感器数量和定位之间的权衡

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Monitoring fetal wellbeing is key in modern obstetrics. While fetal movement is routinely used as a proxy to fetal wellbeing, accurate, noninvasive, long-term monitoring of fetal movement is challenging. A few accelerometer-based systems have been developed in the past few years, to tackle common issues in ultrasound measurement and enable remote, self-administrated monitoring of fetal movement during pregnancy. However, many questions remain unanswered to date on the optimal setup in terms of body-worn accelerometers as well as signal processing and machine learning techniques used to detect fetal movement. In this paper, we systematically analyze the trade-offs between sensor number and positioning, the presence of reference accelerometers outside of the abdominal area and provide guidelines on dealing with class imbalance. Using a dataset of 15 measurements collected employing 6 three-axial accelerometers we show that including a reference accelerometer on the back of the participant consistently improves fetal movement detection performance regardless of the number of sensors utilized. We also show that two accelerometers plus a reference accelerometer are sufficient for optimal results.
机译:监测胎儿福利是现代妇产的关键。虽然胎儿运动经常用作胎儿福祉的代理,但准确,非侵入性,长期监测胎儿运动是具有挑战性的。在过去几年中已经开发了一些基于加速度计的系统,以解决超声测量中的常见问题,并在怀孕期间实现对胎儿运动的遥控监测。然而,许多问题迄今为止在身体磨损的加速度计以及用于检测胎动运动的信号处理和机器学习技术的最佳设置上仍然没有答复。在本文中,我们系统地分析了传感器编号和定位之间的权衡,在腹部区域之外的参考加速度计的存在,并提供了处理类别不平衡的指导。使用采用6个三轴加速度计收集的15个测量的数据集,我们示出了包括参与者背面的参考加速度计,无论使用的传感器的数量如何,都会提高胎儿运动检测性能。我们还表明,两个加速度计加上参考加速度计足以实现最佳结果。

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