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Compressive-sensing-based multidimensional Doppler signal analysis for fetal activity monitoring

机译:基于压缩感知的多维多普勒信号分析,用于胎儿活动监测

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Fetal activity monitoring is an important part of monitoring at-risk pregnancies and labor. Fetal activity parameters (FAP) consist of fetal heart rate (FHR), fetal movements (FM) rate, fetal tone, fetal breathing (FB) and movement. FAP monitoring is to date an open challenge for mainly two reasons. First, the estimation of FAP is highly time consuming and thus cannot be used routinely. Second, part of FAP such as FM estimation is sometimes subjective (mothers are asked to count the fetal movements) and inaccurate. For this purpose, we developed a 2MHz pulsed wave ultrasound Doppler system, consisting of 12 transducers with 5 adjustable gates. The Doppler signals were sampled at 1KHz. Several recent papers have shown the accuracy of our system. However, its counterpart is the huge number of signals necessary to estimate the FAP. Specifically, each millisecond, 60 Doppler samples are acquired. In order to reduce the volume of the acquired data and to accelerate the FAP estimation rate, we propose herein to investigate the interest of compressive sensing (CS) techniques to our application.
机译:胎儿活动监测是监测高危妊娠和分娩的重要组成部分。胎儿活动参数(FAP)包括胎儿心率(FHR),胎儿运动(FM)速率,胎儿语气,胎儿呼吸(FB)和运动。迄今为止,FAP监测仍是一个公开挑战,主要有两个原因。首先,FAP的估算非常耗时,因此无法常规使用。其次,FAP的一部分(例如FM估计)有时是主观的(要求母亲对胎儿的运动进行计数)且不准确。为此,我们开发了一个2MHz脉冲波超声多普勒系统,该系统由12个具有5个可调门的换能器组成。多普勒信号以1KHz采样。最近的几篇论文显示了我们系统的准确性。但是,与之相对应的是估计FAP所需的大量信号。具体而言,每毫秒获取60个多普勒采样。为了减少获取的数据量并加快FAP估计速度,我们在此提出对压缩感测(CS)技术对我们的应用的兴趣。

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