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首页> 外文期刊>Physiological measurement >New electrohysterogram-based estimators of intrauterine pressure signal, tonus and contraction peak for non-invasive labor monitoring
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New electrohysterogram-based estimators of intrauterine pressure signal, tonus and contraction peak for non-invasive labor monitoring

机译:基于新的静脉内压力信号的基于电动静脉压力信号,TONUS和收缩峰值进行非侵入性劳动监测

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摘要

Background: Uterine activity monitoring is an essential part of managing the progress of pregnancy and labor. Although intrauterine pressure (IUP) is the only reliable method of estimating uterine mechanical activity, it is highly invasive. Since there is a direct relationship between the electrical and mechanical activity of uterine cells, surface electrohysterography (EHG) has become a noninvasive monitoring alternative. The Teager energy (TE) operator of the EHG signal has been used for IUP continuous pressure estimation, although its accuracy could be improved. We aimed to develop new optimized IUP estimation models for clinical application. Approach: We first considered enhancing the optimal estimation of IUP clinical features (maximum pressure and tonus) rather than optimizing the signal only (continuous pressure). An adaptive algorithm was also developed to deal with inter-patient variability. For each optimizing signal feature (continuous pressure, maximum pressure and tonus), individual (single patient), global (full database) and adaptive models were built to estimate the recorded IUP signal. The results were evaluated by computing the root mean square errors (RMSe): continuous pressure error (CPe), maximum pressure error (MPe) and tonus error (TOe). Main results: The continuous pressure global model yielded IUP estimates with Cpe = 14.61 mm Hg, MPe = 29.17 mm Hg and Toe = 7.8 mm Hg. The adaptive models significantly reduced errors to CPe = 11.88, MPe = 16.02 and Toe = 5.61 mm Hg. The EHG-based IUP estimates outperformed those from traditional tocographic recordings, which had significantly higher errors (CPe = 21.93, MPe = 26.97, and TOe = 13.96). Significance: Our results show that adaptive models yield better IUP estimates than the traditional approaches and provide the best balance of the different errors computed for a better assessment of the labor progress and maternal and fetal wellbeing.
机译:背景:子宫活动监测是管理怀孕和劳动力进展的重要组成部分。虽然宫内压力(IUP)是估计子宫机械活性的唯一可靠方法,但它具有高度侵袭性。由于子宫细胞的电气和机械活性之间存在直接关系,因此表面电动代术(EHG)已成为非侵入性监测替代方案。尽管可以改善其精度,但EHG信号的茶机能量(TE)操作器已被用于IUP连续压力估计。我们旨在为临床应用开发新的优化IUP估算模型。方法:首先考虑增强IUP临床特征(最大压力和吨)的最佳估计,而不是仅优化信号(连续压力)。还开发了一种自适应算法来处理患者间的变异性。对于每个优化信号特征(连续压力,最大压力和吨),构建了个体(单患者),全局(完整数据库)和自适应模型以估计记录的IUP信号。通过计算根均方误差(RMSE)来评估结果:连续压力误差(CPE),最大压力误差(MPE)和TONUS误差(TOE)。主要结果:连续压力全球型号通过CPE产生IUP估计= 14.61 mm Hg,MPE = 29.17mm Hg和Toe = 7.8 mm Hg。自适应模型显着降低到CPE = 11.88,MPE = 16.02和脚趾= 5.61mm Hg。基于EHG的IUP估计从传统的ToCooRhraphic记录中表现出显着更高的错误(CPE = 21.93,MPE = 26.97和Toe = 13.96)。重要意义:我们的结果表明,自适应模型比传统方法产生更好的IUP估计,并提供所计算的不同误差的最佳平衡,以更好地评估劳动进展和母体幸福。

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  • 来源
    《Physiological measurement 》 |2019年第8期| 共12页
  • 作者单位

    Centro de Investigación e Innovación en Bioingeniería Universitat Politècnica de València Edif. 8B Camino de Vera SN 46022 Valencia Spain;

    Centro de Investigación e Innovación en Bioingeniería Universitat Politècnica de València Edif. 8B Camino de Vera SN 46022 Valencia Spain;

    Centro de Investigación e Innovación en Bioingeniería Universitat Politècnica de València Edif. 8B Camino de Vera SN 46022 Valencia Spain;

    Servicio de Obstetricia y Ginecología Hospital Universitario y Politécnico La Fe de Valencia Valencia Spain;

    Servicio de Obstetricia y Ginecología Hospital Universitario y Politécnico La Fe de Valencia Valencia Spain;

    Servicio de Obstetricia y Ginecología Hospital Universitario y Politécnico La Fe de Valencia Valencia Spain;

    Centro de Investigación e Innovación en Bioingeniería Universitat Politècnica de València Edif. 8B Camino de Vera SN 46022 Valencia Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 诊断学 ;
  • 关键词

    intrauterine pressure; uterine activity; surface electromyography; electrohysterography; Teager energy;

    机译:宫内压力;子宫活性;表面肌电图;electrateStalography;Techger能量;

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