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用于可穿戴式光电容积脉搏波描记术的耐运动磁性耳环传感器和无线耳塞

Motion-tolerant magnetic earring sensor and wireless earpiece for wearable photoplethysmography.

作者信息

Poh Ming-Zher, Swenson Nicholas C, Picard Rosalind W

机构信息

Harvard-MIT Division of Health Sciences and Technology (HST), Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

出版信息

IEEE Trans Inf Technol Biomed. 2010 May;14(3):786-94. doi: 10.1109/TITB.2010.2042607. Epub 2010 Feb 17.

Abstract

This paper addresses the design considerations and critical evaluation of a novel embodiment for wearable photoplethysmography (PPG) comprising a magnetic earring sensor and wireless earpiece. The miniaturized sensor can be worn comfortably on the earlobe and contains an embedded accelerometer to provide motion reference for adaptive noise cancellation. The compact wireless earpiece provides analog signal conditioning and acts as a data-forwarding device via a radio frequency transceiver. Using Bland-Altman and correlation analysis, we evaluated the performance of the proposed system against an FDA-approved ECG measurement device during daily activities. The mean +/- standard deviation (SD) of the differences between heart rate measurements from the proposed device and ECG (expressed as percentage of the average between the two techniques) along with the 95% limits of agreement (LOA = +/-1.96 SD) was 0.62% +/- 4.51% (LOA = -8.23% and 9.46%), -0.49% +/- 8.65% (-17.39% and 16.42%), and -0.32% +/- 10.63% (-21.15% and 20.52%) during standing, walking, and running, respectively. Linear regression indicated a high correlation between the two measurements across the three evaluated conditions (r = 0.97, 0.82, and 0.76, respectively with p < 0.001). The new earring PPG system provides a platform for comfortable, robust, unobtrusive, and discreet monitoring of cardiovascular function.

摘要

本文探讨了一种新型可穿戴光电容积脉搏波描记法(PPG)的设计考量及关键评估,该方法包括一个磁性耳环传感器和无线耳机。这种小型化传感器可舒适地佩戴在耳垂上,并包含一个嵌入式加速度计,用于为自适应噪声消除提供运动参考。紧凑的无线耳机提供模拟信号调节,并通过射频收发器充当数据转发设备。我们使用布兰德-奥特曼分析和相关性分析,在日常活动中评估了该系统相对于美国食品药品监督管理局(FDA)批准的心电图测量设备的性能。在所提出的设备与心电图之间的心率测量差异的平均值±标准差(SD)(表示为两种技术平均值的百分比)以及95%一致性界限(LOA = ±1.96 SD)在站立、行走和跑步时分别为0.62%±4.51%(LOA = -8.23%和9.46%)、-0.49%±8.65%(-17.39%和16.42%)以及-0.32%±10.63%(-21.15%和20.52%)。线性回归表明,在三种评估条件下,这两种测量之间具有高度相关性(r分别为0.97、0.82和0.76,p < 0.001)。这种新型耳环式PPG系统为舒适、稳健、不引人注意且谨慎地监测心血管功能提供了一个平台。

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