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Terahertz spectroscopy of intrinsic biomarkers for non-melanoma skincancer.

机译:非黑色素瘤护肤器的内在生物标志物的太赫兹光谱。

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摘要

Continuous wave terahertz imaging has the potential to offer a safe, non-invasive medical imaging modality for detecting different types of human cancers. The aim of this study was to identify intrinsic biomarkers for non-melanoma skin cancer and their absorption frequencies. Knowledge of these frequencies is a prerequisite for the optimal development of a continuous wave terahertz imaging system for detecting different types of skin cancers. The absorption characteristics of skin constituents were studied between 20 and 100 cm~(-1) (0.6 THz – 3 THz). Terahertz radiation is highly absorbed by water. Thus, the high water content of human tissue necessitates a reflection based imaging modality. To demonstrate a reflection based, high resolution, terahertz imaging system, a prototype imaging system was constructed at 1.56 THz. The system resolution was determined to be 0.5 mm and the system signal to noise ratio was found to be 70 dB. Data from the terahertz spectroscopy experiments and reflection based terahertz images at 1.56 THz are presented.
机译:连续波太赫兹成像有可能提供用于检测不同类型的人类癌症的安全,非侵入性的医学成像模型。本研究的目的是鉴定非黑色素瘤皮肤癌的内在生物标志物及其吸收频率。对这些频率的知识是用于检测不同类型皮肤癌的连续波太赫兹成像系统的最佳发展的先决条件。研究了皮肤成分的吸收特性在20至100cm〜(-1)(0.6至3至3 ZHz)之间。太赫兹辐射受水高度吸收。因此,人体组织的高含水量需要基于反射的成像模态。为了展示基于反射的,高分辨率,太赫兹成像系统,原型成像系统的构建为1.56 THz。确定系统分辨率为0.5mm,发现系统信号与噪声比为70 dB。提出了来自太赫兹光谱实验和基于反射的Terahertz图像的数据。

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