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用于改进宫腔电图测量和建模的子宫壁运动超声分析。

Ultrasound analysis of the uterine wall movement for improved electrohysterographic measurement and modeling.

作者信息

Rabotti Chiara, de Lau Hinke, Haazen Nicole, Oei Guid, Mischi Massimo

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2013;2013:7436-9. doi: 10.1109/EMBC.2013.6611277.

Abstract

During pregnancy, analysis of the electrohysterogram (EHG), which measures the uterine electrical activity, can provide a fundamental contribution for the assessment of uterine contractions and the diagnosis of preterm labor. However, several aspects concerning uterine physiology and its link with EHG measurements are still unclear. As a consequence, the EHG is not yet part of the clinical practice. There is general consensus that modeling and analysis of the EHG can be improved only by understanding and integrating the main properties of the uterine physiology at different levels, e:g:, cellular, tissue, and organ, and of different nature, e:g:, electrical, mechanical, and structural. In this study, we use transabdominal ultrasound (US) measurements to investigate the mechanical changes that the uterus undergoes during pregnancy under the effect of contractions. We refer to this measurement as mechanohysterogram. Analysis of the mechanohysterogram highlights, for the first time, two phenomena that can influence EHG signal interpretation, namely, changes in uterine wall thickness during contractions and respiration-induced uterine wall movements. Our results suggest that these phenomena can affect the interpretation of the EHG and should therefore be taken into account for accurate modeling and assessment of the uterine electrical activity.

摘要

在孕期,对测量子宫电活动的子宫电图(EHG)进行分析,可为评估子宫收缩及诊断早产提供重要依据。然而,有关子宫生理学及其与EHG测量之间的联系的几个方面仍不明确。因此,EHG尚未成为临床实践的一部分。人们普遍认为,只有通过理解和整合不同层面(如细胞、组织和器官)以及不同性质(如电、机械和结构)的子宫生理学的主要特性,才能改进EHG的建模和分析。在本研究中,我们使用经腹超声(US)测量来研究孕期子宫在收缩作用下所经历的机械变化。我们将这种测量称为机械子宫图。对机械子宫图的分析首次突出了两种可能影响EHG信号解读的现象,即收缩期间子宫壁厚度的变化以及呼吸引起的子宫壁运动。我们的结果表明,这些现象会影响EHG的解读,因此在准确建模和评估子宫电活动时应予以考虑。

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