医学
胎儿窘迫
胎心率
电子胎儿监护
不利影响
胎儿
重症监护医学
干预(咨询)
胎儿监护
预警系统
医疗急救
产科
急诊医学
怀孕
心率
内科学
血压
护理部
航空航天工程
工程类
生物
遗传学
作者
Martin G. Frasch,Shadrian B. Strong,David Nilosek,Joshua Leaverton,Barry S. Schifrin
标识
DOI:10.3389/fped.2021.736834
摘要
Despite broad application during labor and delivery, there remains considerable debate about the value of electronic fetal monitoring (EFM). EFM includes the surveillance of fetal heart rate (FHR) patterns in conjunction with the mother's uterine contractions, providing a wealth of data about fetal behavior and the threat of diminished oxygenation and cerebral perfusion. Adverse outcomes universally associate a fetal injury with the failure to timely respond to FHR pattern information. Historically, the EFM data, stored digitally, are available only as rasterized pdf images for contemporary or historical discussion and examination. In reality, however, they are rarely reviewed systematically or purposefully. Using a unique archive of EFM collected over 50 years of practice in conjunction with adverse outcomes, we present a deep learning framework for training and detection of incipient or past fetal injury. We report 94% accuracy in identifying early, preventable fetal injury intrapartum. This framework is suited for automating an early warning and decision support system for maintaining fetal well-being during the stresses of labor. Ultimately, such a system could enable obstetrical care providers to timely respond during labor and prevent both urgent intervention and adverse outcomes. When adverse outcomes cannot be avoided, they can provide guidance to the early neuroprotective treatment of the newborn.
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