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一种用于从受运动伪影干扰的心电图信号中估计心率的粒子滤波框架。

A particle filter framework for the estimation of heart rate from ECG signals corrupted by motion artifacts.

作者信息

Nathan Viswam, Akkaya Ilge, Jafari Roozbeh

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2015;2015:6560-5. doi: 10.1109/EMBC.2015.7319896.

Abstract

In this work, we describe a methodology to probabilistically estimate the R-peak locations of an electrocardiogram (ECG) signal using a particle filter. This is useful for heart rate estimation, which is an important metric for medical diagnostics. Some scenarios require constant in-home monitoring using a wearable device. This poses a particularly challenging environment for heart rate detection, due to the susceptibility of ECG signals to motion artifacts. In this work, we show how the particle filter can effectively track the true R-peak locations amidst the motion artifacts, given appropriate heart rate and R-peak observation models. A particle filter based framework has several advantages due to its freedom from strict assumptions on signal and noise models, as well as its ability to simultaneously track multiple possible heart rate hypotheses. Moreover, the proposed framework is not exclusive to ECG signals and could easily be leveraged for tracking other physiological parameters. We describe the implementation of the particle filter and validate our approach on real ECG data affected by motion artifacts from the MIT-BIH noise stress test database. The average heart rate estimation error is about 5 beats per minute for signal streams contaminated with noisy segments with SNR as low as -6 dB.

摘要

在这项工作中,我们描述了一种使用粒子滤波器概率性估计心电图(ECG)信号R波峰位置的方法。这对于心率估计很有用,心率是医学诊断的一个重要指标。某些场景需要使用可穿戴设备进行持续的居家监测。由于ECG信号容易受到运动伪影的影响,这对心率检测构成了特别具有挑战性的环境。在这项工作中,我们展示了在给定适当的心率和R波峰观测模型的情况下,粒子滤波器如何在运动伪影中有效地跟踪真实的R波峰位置。基于粒子滤波器的框架具有几个优点,因为它不受对信号和噪声模型的严格假设的限制,并且能够同时跟踪多个可能的心率假设。此外,所提出的框架并非仅限于ECG信号,并且可以很容易地用于跟踪其他生理参数。我们描述了粒子滤波器的实现,并在来自麻省理工学院 - 贝斯以色列女执事医疗中心(MIT - BIH)噪声压力测试数据库的受运动伪影影响的真实ECG数据上验证了我们的方法。对于信噪比低至 - 6 dB的包含噪声段的信号流,平均心率估计误差约为每分钟5次心跳。

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