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Development and Evaluation of Multilead Wavelet-Based ECG Delineation Algorithms for Embedded Wireless Sensor Nodes

机译:基于多导小波的嵌入式无线传感器节点心电图描绘算法的开发与评估

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摘要

This work is devoted to the evaluation of multilead digital wavelet transform (DWT)-based electrocardiogram (ECG) wave delineation algorithms, which were optimized and ported to a commercial wearable sensor platform. More specifically, we investigate the use of root-mean squared (RMS)-based multilead followed by a single-lead online delineation algorithm, which is based on a state-of-the-art offline single-lead delineator. The algorithmic transformations and software optimizations necessary to enable embedded ECG delineation notwithstanding the limited processing and storage resources of the target platform are described, and the performance of the resulting implementations are analyzed in terms of delineation accuracy, execution time, and memory usage. Interestingly, RMS-based multilead delineation is shown to perform equivalently to the best single-lead delineation for the 2-lead QT database (QTDB), within a fraction of a sample duration of the Common Standards for Electrocardiography (CSE) committee tolerances. Finally, a comprehensive evaluation of the energy consumption entailed by the considered algorithms is proposed, which allows very relevant insights into the dominant energy-draining functionalities and which suggests suitable design guidelines for long-lasting wearable ECG monitoring systems.
机译:这项工作致力于评估基于多导数小波变换(DWT)的心电图(ECG)波形描绘算法,该算法已优化并移植到了商用可穿戴传感器平台上。更具体地说,我们研究了基于均方根(RMS)的多引线的使用,其后是基于最新脱机单引线描绘器的单引线在线描绘算法。描述了尽管目标平台的处理和存储资源有限,但实现嵌入式ECG描绘所需的算法转换和软件优化,并根据描绘准确性,执行时间和内存使用情况分析了所得实现的性能。有趣的是,在心电图通用标准(CSE)委员会公差的一小部分样本时间内,基于RMS的多引线描述与2引线QT数据库(QTDB)的最佳单引线描述等效。最后,提出了一种对所考虑算法的能耗进行综合评估的方法,该方法可对主要的耗能功能提供非常相关的见解,并为持久的可穿戴式ECG监测系统提供合适的设计指南。

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