Noninvasive electromyometrial imaging of human uterine maturation during term labor

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作者
Hui Wang
Zichao Wen
Wenjie Wu
Zhexian Sun
Zulfia Kisrieva-Ware
Yiqi Lin
Sicheng Wang
Hansong Gao
Haonan Xu
Peinan Zhao
Qing Wang
George A. Macones
Alan L. Schwartz
Phillip Cuculich
Alison G. Cahill
Yong Wang
机构
[1] Washington University,Department of Physics
[2] Washington University School of Medicine,Center for Reproductive Health Sciences
[3] Washington University School of Medicine,Department of Obstetrics and Gynecology
[4] Washington University,Department of Biomedical Engineering
[5] Washington University,Department of Electrical and Systems Engineering
[6] Washington University School of Medicine,Mallinckrodt Institute of Radiology
[7] The University of Texas at Austin,Department of Women’s Health, Dell Medical School
[8] Washington University School of Medicine,Department of Pediatrics
[9] Washington University School of Medicine,Department of Cardiology
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Electromyometrial imaging (EMMI) was recently developed to image the three-dimensional (3D) uterine electrical activation during contractions noninvasively and accurately in sheep. Herein we describe the development and application of a human EMMI system to image and evaluate 3D uterine electrical activation patterns at high spatial and temporal resolution during human term labor. We demonstrate the successful integration of the human EMMI system during subjects’ clinical visits to generate noninvasively the uterine surface electrical potential maps, electrograms, and activation sequence through an inverse solution using up to 192 electrodes distributed around the abdomen surface. Quantitative indices, including the uterine activation curve, are developed and defined to characterize uterine surface contraction patterns. We thus show that the human EMMI system can provide detailed 3D images and quantification of uterine contractions as well as novel insights into the role of human uterine maturation during labor progression.
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