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比较非侵入性电子宫描记术监测子宫动力学的技术。

Comparison of non-invasive electrohysterographic recording techniques for monitoring uterine dynamics.

机构信息

Grupo Bioelectrónica (I3BH), Universitat Politècnica de València, Camino de Vera s/n Ed.8B, 46022 Valencia, 4, Spain.

出版信息

Med Eng Phys. 2013 Dec;35(12):1736-43. doi: 10.1016/j.medengphy.2013.07.008. Epub 2013 Aug 16.

Abstract

Non-invasive recording of uterine myoelectric activity (electrohysterogram, EHG) could provide an alternative to monitoring uterine dynamics by systems based on tocodynamometers (TOCO). Laplacian recording of bioelectric signals has been shown to give better spatial resolution and less interference than mono- and bipolar surface recordings. The aim of this work was to study the signal quality obtained from monopolar, bipolar and Laplacian techniques in EHG recordings, as well as to assess their ability to detect uterine contractions. Twenty-two recording sessions were carried out on singleton pregnant women during the active phase of labour. In each session the following simultaneous recordings were obtained: internal uterine pressure (IUP), external tension of abdominal wall (TOCO) and EHG signals (5 monopolar and 4 bipolar recordings, 1 discrete approximation to the Laplacian of the potential and 2 estimates of the Laplacian from two active annular electrodes). The results obtained show that EHG is able to detect a higher number of uterine contractions than TOCO. Laplacian recordings give improved signal quality over monopolar and bipolar techniques, reduce maternal cardiac interference and improve the signal-to-noise ratio. The optimal position for recording EHG was found to be the uterine median axis and the lower centre-right umbilical zone.

摘要

非侵入性的子宫肌电活动记录(电子宫图,EHG)可以替代基于胎儿监护仪(TOCO)的系统来监测子宫动力学。生物电信号的拉普拉斯记录已被证明比单极和双极表面记录具有更好的空间分辨率和更少的干扰。本工作旨在研究 EHG 记录中单极、双极和拉普拉斯技术获得的信号质量,以及评估它们检测子宫收缩的能力。在分娩活跃期对 22 名单胎孕妇进行了 22 次记录。在每次记录中,同时获得以下记录:子宫内压(IUP)、腹壁张力(TOCO)和 EHG 信号(5 个单极和 4 个双极记录,1 个潜在拉普拉斯的离散逼近和 2 个来自两个主动环形电极的拉普拉斯估计)。结果表明,EHG 能够检测到比 TOCO 更多的子宫收缩。拉普拉斯记录比单极和双极技术具有更好的信号质量,减少了母体心脏干扰,提高了信噪比。EHG 记录的最佳位置被发现是子宫中线和下脐右侧中心区。

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