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使用脉冲太赫兹辐射对人体皮肤进行的体内研究。

In vivo study of human skin using pulsed terahertz radiation.

作者信息

Pickwell E, Cole B E, Fitzgerald A J, Pepper M, Wallace V P

机构信息

Semiconductor Physics Group, Cavendish Laboratory, Cambridge University, Madingley Road, Cambridge CB3 0HE, UK.

出版信息

Phys Med Biol. 2004 May 7;49(9):1595-607. doi: 10.1088/0031-9155/49/9/001.

Abstract

Studies in terahertz (THz) imaging have revealed a significant difference between skin cancer (basal cell carcinoma) and healthy tissue. Since water has strong absorptions at THz frequencies and tumours tend to have different water content from normal tissue, a likely contrast mechanism is variation in water content. Thus, we have previously devised a finite difference time-domain (FDTD) model which is able to closely simulate the interaction of THz radiation with water. In this work we investigate the interaction of THz radiation with normal human skin on the forearm and palm of the hand in vivo. We conduct the first ever systematic in vivo study of the response of THz radiation to normal skin. We take in vivo reflection measurements of normal skin on the forearm and palm of the hand of 20 volunteers. We compare individual examples of THz responses with the mean response for the areas of skin under investigation. Using the in vivo data, we demonstrate that the FDTD model can be applied to biological tissue. In particular, we successfully simulate the interaction of THz radiation with the volar forearm. Understanding the interaction of THz radiation with normal skin will form a step towards developing improved imaging algorithms for diagnostic detection of skin cancer and other tissue disorders using THz radiation.

摘要

太赫兹(THz)成像研究显示,皮肤癌(基底细胞癌)与健康组织之间存在显著差异。由于水在太赫兹频率下有强烈吸收,且肿瘤的含水量往往与正常组织不同,一个可能的对比度机制是含水量的变化。因此,我们之前设计了一种时域有限差分(FDTD)模型,该模型能够紧密模拟太赫兹辐射与水的相互作用。在这项工作中,我们研究了太赫兹辐射与体内人前臂和手掌正常皮肤的相互作用。我们首次对太赫兹辐射对正常皮肤的反应进行了系统的体内研究。我们对20名志愿者的前臂和手掌正常皮肤进行了体内反射测量。我们将太赫兹反应的个体实例与所研究皮肤区域的平均反应进行比较。利用体内数据,我们证明FDTD模型可应用于生物组织。特别是,我们成功模拟了太赫兹辐射与掌侧前臂的相互作用。了解太赫兹辐射与正常皮肤的相互作用将为开发改进的成像算法迈出一步,以便利用太赫兹辐射对皮肤癌和其他组织疾病进行诊断检测。

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