Suppr超能文献

使用双正交样条小波变换设计用于可穿戴医疗保健设备的高性能 QRS 复合波检测器。

Design of high performance QRS complex detector for wearable healthcare devices using biorthogonal spline wavelet transform.

机构信息

Department of Electrical Engineering, Indian Institute of Technology Bombay, Powai, Mumbai, Maharashtra, 400076, India.

Electronics and Communication Division, School of Engineering and Applied Sciences, Bennett University, Greater Noida, UP, 201310, India.

出版信息

ISA Trans. 2018 Oct;81:222-230. doi: 10.1016/j.isatra.2018.08.002. Epub 2018 Aug 16.

Abstract

A high performance QRS complex detector applicable for wearable healthcare devices is proposed in the present work. Since, higher SNR results in better detection accuracy and lesser number of coefficients reduces the hardware resources as well as power dissipation during on chip implementation. Biorthogonal spline wavelet transform is chosen for the proposed detector as it has high signal to noise ratio (SNR) and uses only four coefficients for decomposition. In the proposed approach, a Biorthogonal wavelet filter bank with fourth level decomposition is first used to separate the different frequency components and then a fourth level wavelet filter bank is used to get the denoised electrocardiogram (ECG) signals. Wavelet filter bank outputs are multiplied and soft threshold method is applied to get the QRS complex peaks by the QRS complex peak detector block. Add and shift multiplier used in the earlier designs has been replaced by a Booth multiplier in our approach to achieve the higher performance. Booth multiplier and QRS complex peak detector blocks have been designed for low hardware complexity, high performance and accurate detection of the QRS complex peaks. Time interval between the consecutive QRS peaks is calculated using the R-R peak time calculator block and the heart rate (HR) by the HR calculator block. Heart Rate Variability (HRV) and arrhythmia are detected based on these heart rate calculations. Proposed design has been tested for its robustness on multiple datasets (namely, MIT-BIH arrhythmia, MIT-BIH noise stress test, and MIT-BIH atrial fibrillation databases). Sensitivity of 99.31%, positive predictivity of 99.19% and the Detection Error Rate (DER) of 1.49% shown by the proposed design makes it preferable for QRS complex detectors used in wearable healthcare devices.

摘要

本工作提出了一种适用于可穿戴医疗设备的高性能 QRS 复合波检测器。因为较高的信噪比可提高检测精度,较少的系数可减少硬件资源和片上实现期间的功耗。由于双正交样条小波变换具有较高的信噪比 (SNR),并且仅使用四个系数进行分解,因此选择双正交样条小波变换用于提出的检测器。在提出的方法中,首先使用具有四级分解的双正交小波滤波器组来分离不同的频率分量,然后使用四级小波滤波器组获得去噪心电图 (ECG) 信号。小波滤波器组的输出相乘,并通过 QRS 复合波峰检测器块应用软阈值方法获得 QRS 复合波峰。在我们的方法中,用 Booth 乘法器代替了早期设计中使用的加和移位乘法器,以实现更高的性能。Booth 乘法器和 QRS 复合波峰检测器块已针对低硬件复杂度、高性能和准确检测 QRS 复合波峰进行了设计。通过 R-R 峰值时间计算器块计算连续 QRS 峰值之间的时间间隔,并通过 HR 计算器块计算心率 (HR)。基于这些心率计算来检测心率变异性 (HRV) 和心律失常。所提出的设计已在多个数据集(即,MIT-BIH 心律失常、MIT-BIH 噪声压力测试和 MIT-BIH 心房颤动数据库)上进行了稳健性测试。所提出的设计表现出 99.31%的灵敏度、99.19%的阳性预测值和 1.49%的检测误差率 (DER),使其成为可穿戴医疗设备中使用的 QRS 复合波检测器的首选。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验