首页> 外文会议>Annual Conference of Japanese Society for Medical and Biological Engineering;Annual International Conference of the IEEE Engineering in Medicine and Biology Society >Vectorcardiographic loop alignment for fetal movement detection using the Expectation-Maximization algorithm and Support Vector Machines
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Vectorcardiographic loop alignment for fetal movement detection using the Expectation-Maximization algorithm and Support Vector Machines

机译:使用期望最大化算法和支持向量机进行胎儿运动检测的矢量心电图环对准

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Reduced fetal movement is an important parameter to assess fetal distress. Currently, no suitable methods are available that can objectively assess fetal movement during pregnancy. Fetal vectorcardiographic (VCG) loop alignment could be such a method. In general, the goal of VCG loop alignment is to correct for motion-induced changes in the VCGs of (multiple) consecutive heartbeats. However, the parameters used for loop alignment also provide information to assess fetal movement. Unfortunately, current methods for VCG loop alignment are not robust against low-quality VCG signals. In this paper, a more robust method for VCG loop alignment is developed that includes a priori information on the loop alignment, yielding a maximum a posteriori loop alignment. Classification, based on movement parameters extracted from the alignment, is subsequently performed using support vector machines, resulting in correct classification of (absence of) fetal movement in about 75% of cases. After additional validation and optimization, this method can possibly be employed for continuous fetal movement monitoring.
机译:胎儿活动减少是评估胎儿窘迫的重要参数。当前,没有合适的方法可以客观地评估怀孕期间的胎儿运动。胎儿矢量心电图(VCG)环对齐可能是这种方法。通常,VCG循环对齐的目的是校正(多个)连续心跳的VCG中运动引起的变化。但是,用于环对齐的参数也提供了评估胎儿运动的信息。不幸的是,当前的用于VCG环路对准的方法对于低质量的VCG信号并不鲁棒。在本文中,开发了一种更强大的VCG循环对齐方法,该方法包括有关循环对齐的先验信息,从而产生最大的后验循环对齐。随后,使用支持向量机基于从比对中提取的运动参数进行分类,从而在大约75%的情况下对(不存在)胎儿运动进行了正确的分类。经过额外的验证和优化后,可以将该方法用于连续的胎儿运动监测。

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