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A Multi-Wavelength Opto-Electronic Patch Sensor to Effectively Detect Physiological Changes against Human Skin Types

机译:多波长光电贴片传感器可有效检测针对人类皮肤类型的生理变化

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摘要

Different skin pigments among various ethnic group people have an impact on spectrometric illumination on skin surface. To effectively capture photoplethysmographic (PPG) signals, a multi-wavelength opto-electronic patch sensor (OEPS) together with a schematic architecture of electronics were developed to overcome the drawback of present PPG sensor. To perform a better in vivo physiological measurement against skin pigments, optimal illuminations in OEPS, whose wavelength is compatible with a specific skin type, were optimized to capture a reliable physiological sign of heart rate (HR). A protocol was designed to investigate an impact of five skin types in compliance with Von Luschan’s chromatic scale. Thirty-three healthy male subjects between the ages of 18 and 41 were involved in the protocol implemented by means of the OEPS system. The results show that there is no significant difference (p: 0.09, F = 3.0) in five group tests with the skin types across various activities throughout a series of consistent measurements. The outcome of the present study demonstrates that the OEPS, with its multi-wavelength illumination characteristics, could open a path in multiple applications of different ethnic groups with cost-effective health monitoring.
机译:不同种族的人群中不同的皮肤色素对皮肤表面的光谱照明有影响。为了有效捕获光电容积描记(PPG)信号,开发了多波长光电贴片传感器(OEPS)以及电子原理图架构,以克服当前PPG传感器的缺点。为了对皮肤色素进行更好的体内生理测量,对OEPS的最佳照明进行了优化,其波长与特定的皮肤类型兼容,以捕获可靠的心率(HR)生理信号。设计了一项协议,旨在研究五种皮肤类型对冯·卢尚(Von Luschan)色度标准的影响。通过OEPS系统实施的实验方案涉及18至41岁的33位健康男性受试者。结果表明,在一系列一致的测量中,五种组测试的皮肤类型在各种活动中没有显着差异(p:0.09,F = 3.0)。本研究的结果表明,具有多波长照明特性的OEPS可以通过具有成本效益的健康监测为不同种族的多种应用开辟道路。

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