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Infrared Irradiation of Skin for the Development of Non-invasive Health Monitoring Technologies

机译:无侵入性健康监测技术的开发的皮肤红外线辐照

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Infrared radiation was employed to study the optical transmission properties of pigskin and the factors that influence transmission at room temperature. The skin samples from the forehead of piglets were irradiated using an infrared-pulsed source by varying the beam properties such as optical power, power density, duty cycle, as well as sample thickness. Because infrared radiation in select instances can penetrate through thick-fleshy skin more easily than visible radiation, temperature fluctuations observed within the skin samples stemming from exposure-dependent absorption revealed interesting transmission properties and the limits of optical exposure. Pigskin was selected for this study since its structure most closely resembles that of human skin. Furthermore, the pulsed beam technique compared to continuous operation offers more precise control of heat generation within the skin. Through this effort, the correlated pulsed-beam parameters that influence infrared transmission were identified and varied to minimize the internal absorption losses through the dermis layers. The two most significant parameters that reduce absorption losses were frequency and duty cycle of the pulsed beam. Using the Bouger-Beer-Lambert Law, the absorption coefficient from empirical data is approximated, while accepting that the absorption coefficient is neither uniform nor linear. Given that the optical source used in this study was single mode, the infrared spectra obtained from irradiated samples also reveal characteristics of the skin structure. Realization of appropriate sample conditions and exposure parameters that reduce light attenuation within the skin and sample degradation could give way to novel non-invasive measuring techniques for health monitoring purposes.
机译:采用红外辐射来研究猪皮的光学传输性能和在室温下影响变速器的因素。通过改变诸如光功率,功率密度,占空比的光束性能,以及样品厚度,使用红外脉冲源照射来自仔猪额头的皮肤样品。因为选择实例中的红外辐射可以比可见辐射更容易穿透厚肉质皮肤,所以在曝光依赖性吸收中观察到的皮肤样品内观察到的温度波动显示出有趣的传动特性和光学曝光的限制。由于其结构最与人体皮肤最近相似,因此选择了猪皮。此外,与连续操作相比的脉冲光束技术提供了更精确地控制皮肤内的发热。通过这种努力,鉴定了影响红外变速器的相关脉冲束参数,并改变以最小化通过真皮层的内部吸收损失。减少吸收损失的两个最重要的参数是脉冲梁的频率和占空比。使用Bouger-Beer-Lambert Law,从经验数据的吸收系数近似,同时接受吸收系数既不均匀也不是线性的。鉴于本研究中使用的光源是单一模式,从辐照样品获得的红外光谱也揭示了皮肤结构的特征。实现适当的样品条件和曝光参数,降低皮肤和样品降解的光衰减可以使促进用于健康监测目的的新型非侵入性测量技术。

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