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孕妇子宫收缩的肌电图成像。

Electromyometrial Imaging of Uterine Contractions in Pregnant Women.

机构信息

Department of Physics, Washington University; Center for Reproductive Health Sciences, Washington University School of Medicine; Department of Obstetrics and Gynecology, Washington University School of Medicine.

Center for Reproductive Health Sciences, Washington University School of Medicine; Department of Obstetrics and Gynecology, Washington University School of Medicine.

出版信息

J Vis Exp. 2023 May 26(195). doi: 10.3791/65214.

Abstract

During normal pregnancy, the uterine smooth muscle, the myometrium, begins to have weak, uncoordinated contractions at late gestation to help the cervix remodel. In labor, the myometrium has strong, coordinated contractions to deliver the fetus. Various methods have been developed to monitor uterine contraction patterns to predict labor onset. However, the current techniques have limited spatial coverage and specificity. We developed electromyometrial imaging (EMMI) to noninvasively map uterine electrical activity onto the three-dimensional uterine surface during contractions. The first step in EMMI is to use T1-weighted magnetic resonance imaging to acquire the subject-specific body-uterus geometry. Next, up to 192 pin-type electrodes placed on the body surface are used to collect electrical recordings from the myometrium. Finally, the EMMI data processing pipeline is performed to combine the body-uterus geometry with body surface electrical data to reconstruct and image uterine electrical activities on the uterine surface. EMMI can safely and noninvasively image, identify, and measure early activation regions and propagation patterns across the entire uterus in three dimensions.

摘要

在正常妊娠期间,子宫平滑肌(即子宫肌层)在妊娠晚期会开始出现微弱、不协调的收缩,以帮助子宫颈重塑。在分娩过程中,子宫肌层会出现强烈、协调的收缩,以娩出胎儿。已经开发出各种方法来监测子宫收缩模式,以预测分娩开始。然而,目前的技术具有有限的空间覆盖范围和特异性。我们开发了肌电成像(EMMI)技术,以非侵入性的方式在收缩期间将子宫的电活动映射到三维子宫表面。EMMI 的第一步是使用 T1 加权磁共振成像来获取特定于个体的身体-子宫几何形状。接下来,多达 192 个针型电极放置在身体表面,用于从子宫肌层收集电记录。最后,执行 EMMI 数据处理管道,将身体-子宫几何形状与身体表面电数据相结合,以重建和成像子宫表面上的子宫电活动。EMMI 可以安全、非侵入性地成像、识别和测量整个子宫在三维空间中的早期激活区域和传播模式。

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