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胎儿心脏多普勒信号处理技术:挑战与未来研究方向

Fetal Cardiac Doppler Signal Processing Techniques: Challenges and Future Research Directions.

作者信息

Alnuaimi Saeed Abdulrahman, Jimaa Shihab, Khandoker Ahsan H

机构信息

Department of Electrical and Computer Engineering, Khalifa University, Abu Dhabi, United Arab Emirates.

Department of Biomedical Engineering, Khalifa University, Abu Dhabi, United Arab Emirates.

出版信息

Front Bioeng Biotechnol. 2017 Dec 22;5:82. doi: 10.3389/fbioe.2017.00082. eCollection 2017.

Abstract

The fetal Doppler Ultrasound (DUS) is commonly used for monitoring fetal heart rate and can also be used for identifying the event timings of fetal cardiac valve motions. In early-stage fetuses, the detected Doppler signal suffers from noise and signal loss due to the fetal movements and changing fetal location during the measurement procedure. The fetal cardiac intervals, which can be estimated by measuring the fetal cardiac event timings, are the most important markers of fetal development and well-being. To advance DUS-based fetal monitoring methods, several powerful and well-advanced signal processing and machine learning methods have recently been developed. This review provides an overview of the existing techniques used in fetal cardiac activity monitoring and a comprehensive survey on fetal cardiac Doppler signal processing frameworks. The review is structured with a focus on their shortcomings and advantages, which helps in understanding fetal Doppler cardiogram signal processing methods and the related Doppler signal analysis procedures by providing valuable clinical information. Finally, a set of recommendations are suggested for future research directions and the use of fetal cardiac Doppler signal analysis, processing, and modeling to address the underlying challenges.

摘要

胎儿多普勒超声(DUS)通常用于监测胎儿心率,也可用于识别胎儿心脏瓣膜运动的事件时间。在早期胎儿中,由于测量过程中胎儿的运动和胎儿位置的变化,检测到的多普勒信号会受到噪声和信号丢失的影响。通过测量胎儿心脏事件时间可以估计的胎儿心脏间期,是胎儿发育和健康的最重要标志。为了推进基于DUS的胎儿监测方法,最近已经开发了几种强大且先进的信号处理和机器学习方法。本文综述了胎儿心脏活动监测中使用的现有技术,并对胎儿心脏多普勒信号处理框架进行了全面调查。该综述的结构重点关注其缺点和优点,通过提供有价值的临床信息,有助于理解胎儿多普勒心电图信号处理方法和相关的多普勒信号分析程序。最后,针对未来的研究方向以及使用胎儿心脏多普勒信号分析、处理和建模来应对潜在挑战提出了一系列建议。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0484/5743703/3ecee35ad194/fbioe-05-00082-g001.jpg

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