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基于安装在椅子上的加速度计开发一种用于久坐行为的非接触式心率监测系统。

Development of a noncontact heart rate monitoring system for sedentary behavior based on an accelerometer attached to a chair.

作者信息

Lim Eunho, Lee Hyo-Ki, Myoung Hyoun-Seok, Lee Kyoung-Joung

出版信息

Physiol Meas. 2015 Mar;36(3):N61-70. doi: 10.1088/0967-3334/36/3/N61. Epub 2015 Feb 16.

Abstract

Although people spend a third of their day engaged in sedentary activities, research on heart activity during sitting is almost nonexistent because of the discomfort experienced when electrocardiogram (ECG) measurement electrodes are attached to the body. Accordingly, in this study, a system was developed to monitor heart rate (HR) in a noncontact and unconstrained way while subjects were seated, by attaching an accelerometer on the backrest of a chair. Acceleration signals were obtained three times from 20 healthy adults, a detection algorithm was applied, and HR detection performance was evaluated by comparing the R-peak values from the ECG. The system had excellent performance results, with a sensitivity of 96.10% and a positive predictive value of 96.43%. In addition, the HR calculated by the new system developed in this study was compared with HR calculated using ECG. The new system exhibited excellent performance; its results were strongly correlated with that of ECG (r = 0.97, p [Formula: see text] 0.0001; average difference of -0.08  ±  4.60 [mean ± 1.96∙standard deviation] in Bland-Altman analysis). Accordingly, the method presented in this study is expected to be applicable for evaluating diverse autonomic nervous system components in a noncontact and unconstrained way using an accelerometer to monitor the HR of sedentary workers or adolescents.

摘要

尽管人们一天中有三分之一的时间从事久坐不动的活动,但由于在身体上附着心电图(ECG)测量电极时会感到不适,因此几乎不存在关于坐着时心脏活动的研究。因此,在本研究中,开发了一种系统,通过在椅子靠背上安装加速度计,以非接触和无约束的方式监测受试者坐着时的心率(HR)。从20名健康成年人身上三次获取加速度信号,应用检测算法,并通过比较心电图的R波峰值来评估心率检测性能。该系统具有优异的性能结果,灵敏度为96.10%,阳性预测值为96.43%。此外,将本研究中开发的新系统计算出的心率与使用心电图计算出的心率进行了比较。新系统表现出优异的性能;其结果与心电图结果高度相关(r = 0.97,p [公式:见正文]<0.0001;在Bland-Altman分析中平均差异为-0.08 ± 4.60 [均值 ± 1.96 ∙ 标准差])。因此,本研究中提出的方法有望适用于以非接触和无约束的方式,使用加速度计监测久坐工作者或青少年的心率,从而评估各种自主神经系统成分。

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