Cuff-less blood pressure estimation using hetero-core optical fibers

IF 0.5 4区 工程技术 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Electronics and Communications in Japan Pub Date : 2023-12-14 DOI:10.1002/ecj.12438
Yuya Koyama, Hiroki Kamada, Kazuhiro Watanabe, Michiko Nishiyama
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Abstract

In this study, we proposed a cuff-less blood pressure measurement using a medical tape sensor with an embedded hetero-core optical fiber. The tape sensor pasted on the skin can directly detect pulse wave signals with a simple measuring device. Pulse transit time (PTT) was obtained from the time difference between the two pulse waveforms at the neck and foot. Systolic blood pressure (SBP) was estimated from PTT and the regression equation. The result shows that the maximum prediction error was 3.8 mmHg in five healthy young subjects. The SBP data were evaluated using a Bland-Altman method to assess the agreement of SBP data estimated by the proposed method with those measured by the cuff-based electronic sphygmomanometer. The mean ± 1.96 standard deviation of the estimated SBP against the reference was −1.3 ± 5.1 mmHg. The results show that the proposed noninvasive blood pressure measurement method can measure blood pressure, and its accuracy is comparable to that of the cuff-based electronic sphygmomanometer.

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使用异芯光纤进行无袖带血压估算
在这项研究中,我们提出了一种使用嵌入式异芯光纤的医用胶带传感器进行无袖带血压测量的方法。贴在皮肤上的胶带传感器可以直接检测脉搏波信号,测量设备简单。根据颈部和足部两个脉搏波形之间的时间差,可得出脉搏传输时间(PTT)。根据 PTT 和回归方程估算收缩压(SBP)。结果显示,在五名健康的年轻受试者中,最大预测误差为 3.8 mmHg。采用布兰-阿尔特曼法评估了 SBP 数据,以评估拟议方法估算的 SBP 数据与袖带式电子血压计测量的 SBP 数据的一致性。估测的 SBP 与参考值的平均值(± 1.96)个标准差为-1.3 ± 5.1 mmHg。结果表明,拟议的无创血压测量方法可以测量血压,其准确性与袖带式电子血压计相当。
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来源期刊
Electronics and Communications in Japan
Electronics and Communications in Japan 工程技术-工程:电子与电气
CiteScore
0.60
自引率
0.00%
发文量
45
审稿时长
6-12 weeks
期刊介绍: Electronics and Communications in Japan (ECJ) publishes papers translated from the Transactions of the Institute of Electrical Engineers of Japan 12 times per year as an official journal of the Institute of Electrical Engineers of Japan (IEEJ). ECJ aims to provide world-class researches in highly diverse and sophisticated areas of Electrical and Electronic Engineering as well as in related disciplines with emphasis on electronic circuits, controls and communications. ECJ focuses on the following fields: - Electronic theory and circuits, - Control theory, - Communications, - Cryptography, - Biomedical fields, - Surveillance, - Robotics, - Sensors and actuators, - Micromachines, - Image analysis and signal analysis, - New materials. For works related to the science, technology, and applications of electric power, please refer to the sister journal Electrical Engineering in Japan (EEJ).
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