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基于多方法融合的光学干涉信号心搏和呼吸检测。

Heartbeat and respiration detection from optical interferometric signals by using a multimethod approach.

机构信息

Faculty of Electrical Engineering and Computer Science, University of Maribor, Maribor, Slovenia.

出版信息

IEEE Trans Biomed Eng. 2012 Oct;59(10):2922-9. doi: 10.1109/TBME.2012.2213302. Epub 2012 Aug 15.

Abstract

In this paper, a multimethod approach for heartbeat and respiration detection from an optical interferometric signal is proposed. Optical interferometer is a sensitive device that detects physical changes of optical-fiber length due to external perturbations. When in direct or indirect contact with human body (e.g., hidden in a bed mattress), mechanical and acoustic activity of cardiac muscle and respiration reflect in the interferometric signal, enabling entirely unobtrusive monitoring of heartbeat and respiration. A novel, two-phased multimethod approach was developed for this purpose. The first phase selects best performing combinations of detection methods on a training set of signals. The second phase applies the selected methods to test set of signals and fuses all the detections of vital signs. The test set consisted of 14 subjects cycling an ergometer until reaching their submaximal heart rate. The following resting periods were analyzed showing high efficiency (98.18 ± 1.40% sensitivity and 97.04 ± 4.95% precision) and accuracy (mean absolute error of beat-to-beat intervals 22±9 ms) for heartbeat detection, and acceptable efficiency (90.06 ± 7.49% sensitivity and 94.21 ± 3.70% precision) and accuracy (mean absolute error of intervals between respiration events 0.33 ± 0.14 s) for respiration detection.

摘要

本文提出了一种从光学干涉信号中检测心跳和呼吸的多方法方法。光学干涉仪是一种灵敏的设备,可检测由于外部干扰而导致光纤长度发生的物理变化。当与人体直接或间接接触(例如,隐藏在床垫中)时,心肌和呼吸的机械和声学活动会反映在干涉信号中,从而能够实现对心跳和呼吸的完全非侵入式监测。为此目的开发了一种新颖的两阶段多方法方法。第一阶段在信号的训练集上选择检测方法的最佳性能组合。第二阶段将选定的方法应用于测试集的信号,并融合所有生命体征的检测。测试集由 14 名受试者组成,他们在测力计上循环运动,直到达到他们的亚最大心率。分析了以下休息期,结果显示心跳检测的效率(98.18±1.40%灵敏度和 97.04±4.95%精度)和准确性(逐拍间隔的平均绝对误差 22±9ms)均很高,呼吸检测的效率(90.06±7.49%灵敏度和 94.21±3.70%精度)和准确性(呼吸事件之间的间隔的平均绝对误差 0.33±0.14s)也可以接受。

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