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通过水吸附-解吸测定太赫兹辐射的频率依赖性皮肤穿透深度。

Frequency-dependent skin penetration depth of terahertz radiation determined by water sorption-desorption.

作者信息

You Borwen, Chen Ching-Yu, Yu Chin-Ping, Wang Pei-Hwa, Lu Ja-Yu

出版信息

Opt Express. 2018 Sep 3;26(18):22709-22721. doi: 10.1364/OE.26.022709.

Abstract

A multilayered water-skin model is used to experimentally verify a new sensing method for determining the skin penetration depth of radiation with 0.1-0.9 terahertz (THz) frequencies. A water overlayer is dripped on a skin sample to form a multilayered structure for dynamically measuring the reflected THz-wave amplitude during water desorption. Skin penetration depths can be successfully derived by using the multilayered water-skin model and by considering the measured reflectivity, water dielectric constants, and effective thicknesses of the water overlayer on the skin sample. The maximum penetration depth is approximately 0.3 mm and is obtained with wave frequencies of 0.4-0.6 THz. This penetration depth encompasses the stratum corneum (SC) and part of the epidermis. The high penetration depth of 0.4-0.6 THz waves is also confirmed in the dried and damaged SC.

摘要

采用多层水-皮肤模型对一种用于确定频率为0.1-0.9太赫兹(THz)的辐射的皮肤穿透深度的新传感方法进行实验验证。将水覆盖层滴在皮肤样本上以形成多层结构,用于在水脱附过程中动态测量反射太赫兹波的幅度。通过使用多层水-皮肤模型并考虑测量的反射率、水的介电常数以及皮肤样本上水覆盖层的有效厚度,可以成功得出皮肤穿透深度。最大穿透深度约为0.3毫米,在波频率为0.4-0.6太赫兹时获得。该穿透深度涵盖角质层(SC)和部分表皮。在干燥和受损的SC中也证实了0.4-0.6太赫兹波的高穿透深度。

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