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Signatures of human skin in the millimetre wave band (80-100) GHz

机译:毫米波频段(80-100)GHz中人体皮肤的特征

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With the performance of millimeter wave security screening imagers improving (reduced speckle, greater sensitivity, and better spatial resolution) attention is turning to identification of anomalies which appear on the human body. Key to this identification is the understanding of how the emissive and reflective properties vary over the human body and between different categories of people, defined by age and gender for example. As the interaction of millimetre waves with the human body is only a fraction of a millimetre into the skin, precise measurement of the emission and reflection of this radiation will allow comparisons with the norm for that region of the body and person category. On an automated basis at security screening portals, this will increase detection probabilities and reduce false alarm rates, ensuring high throughputs at entrances to future airport departure lounges and transport networks. A technique to measure the human skin emissivity in vivo over the frequency band 80 GHz to 100 GHz is described. The emissivities of the skin of a sample of 60 healthy participants (36 males and 24 females) measured using a 90 GHz calibrated radiometer was found to range from 0.17±0.002 to 0.68±0.002. The radiometric measurements were made at four locations on the arm, namely: palm of hand, back of hand, dorsal surface of the forearm, and volar side of the forearm, where the water content and the skin thickness are known to be different. These measurements show significant variation in emissivity from person to person and, more importantly, significant variation at different locations on the arms of individuals. Males were found to have an emissivity 0.03 higher than those of females. The emissivity of the back of the hand, where the skin is thinner and the blood vessels are closer to the skin surface, was found to be lower by 0.0681 than the emissivity of the palm of the hand, where the skin is thicker. The measurements also show that the emissivity of the volar side location where the blood vessels are closer to the skin surface is lower by 0.0677 than the emissivity of the dorsal surface location. The measured differences agree with those differences estimated by a half space electromagnetic model of the interaction and can be interpreted in terms of the differing water contents and skin thickness of those regions of the body.
机译:随着毫米波安全筛查成像仪性能的提高(减少斑点,更高的灵敏度和更好的空间分辨率),注意力开始转向识别出现在人体上的异常。识别的关键在于了解发射特性和反射特性在人体上以及不同类别的人之间如何变化,例如,由年龄和性别定义。由于毫米波与人体的相互作用只是进入皮肤的一毫米的几分之一,因此可以精确测量此辐射的发射和反射,从而可以与人体和人体类别该区域的标准进行比较。在安全性检查门户网站上,这将自动提高检测概率并降低误报率,从而确保未来机场候机室和运输网络的入口处的高吞吐量。描述了一种在80 GHz至100 GHz频段上测量人体皮肤体内发射率的技术。发现使用90 GHz校准辐射计测量的60位健康参与者(36位男性和24位女性)的皮肤皮肤发射率范围为0.17±0.002至0.68±0.002。辐射度测量是在手臂的四个位置进行的,即:手掌,手背,前臂的背面和前臂的掌侧,这些位置的含水量和皮肤厚度不同。这些测量结果显示了人与人之间发射率的显着变化,更重要的是,在人的手臂上不同位置处的显着变化。发现男性的发射率比女性高0.03。发现皮肤较薄且血管更靠近皮肤表面的手背的发射率比皮肤较厚的手掌的发射率低0.0681。测量结果还表明,血管靠近皮肤表面的掌侧位置的发射率比背侧表面的发射率低0.0677。所测得的差异与通过相互作用的半空间电磁模型估算的那些差异相符,并且可以根据人体那些区域的不同含水量和皮肤厚度来解释。

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