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Data Fusion For Estimating Respiratory Rate From A Single-lead ECG

机译:数据融合,可从单导联心电图估计呼吸频率

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摘要

Respiratory rate, an important antecedent of patient deterioration, is inadequately recorded by hospital staff, partially due to the absence of a reliable automated technique for measuring it. The ECG has been proposed by several authors in recent years as a source of reliable respiratory information. Most algorithms proposed use either respiratory sinus arrhythmia (RSA) or the R-peak amplitude (RPA) modulation of the ECG. In this paper, we propose a novel method for estimating respiratory rate from the ECG which fuses frequency information from the two methods. The method was evaluated on data from 40 young and elderly subjects and validated against a "gold standard" respiratory rate obtained from simultaneously recorded respiration data. The fusion method outperformed the RSA and RPA methods, giving a mean absolute error of 0.81 bpm for the young subject population and 0.84 bpm for the elderly, using 1 -min windows of data. Unlike other algorithms, the technique does not underperform at the lower or higher respiratory rates.
机译:呼吸频率是患者恶化的重要先决条件,医院工作人员没有充分记录呼吸频率,部分原因是缺少可靠的自动化测量技术。近年来,几位作者已提出将ECG作为可靠的呼吸信息的来源。建议的大多数算法使用呼吸窦性心律不齐(RSA)或ECG的R峰幅度(RPA)调制。在本文中,我们提出了一种从心电图估计呼吸频率的新方法,该方法融合了两种方法的频率信息。该方法是根据来自40名年轻和老年受试者的数据进行评估的,并根据从同时记录的呼吸数据中获得的“黄金标准”呼吸频率进行了验证。融合方法的性能优于RSA和RPA方法,使用1分钟的数据窗口,年轻人的平均绝对误差为0.81 bpm,老年人的平均绝对误差为0.84 bpm。与其他算法不同,该技术在较低或较高的呼吸频率下不会表现不佳。

著录项

  • 来源
    《Biomedical signal processing and control》 |2013年第1期|98-105|共8页
  • 作者单位

    Institute ofBiomedical Engineering, Department of Engineering Science, Old Road Campus Research Building, University of Oxford, Headington, Oxford 0X3 7DQ, UK;

    Institute ofBiomedical Engineering, Department of Engineering Science, Old Road Campus Research Building, University of Oxford, Headington, Oxford 0X3 7DQ, UK,Department of Primary Health Care, Medical Sciences Division, University of Oxford, 2nd Floor, 23-38 Hythe Bridge Street, Oxford 0X1 2ET, UK;

    Institute ofBiomedical Engineering, Department of Engineering Science, Old Road Campus Research Building, University of Oxford, Headington, Oxford 0X3 7DQ, UK;

    Institute ofBiomedical Engineering, Department of Engineering Science, Old Road Campus Research Building, University of Oxford, Headington, Oxford 0X3 7DQ, UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Respiratory rate; Respiratory sinus arrhythmia; R-peak amplitude; Single-lead ECG;

    机译:呼吸频率;呼吸性窦性心律不齐;R峰幅度;单导心电图;

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