首页> 外文会议>Conference on Millimetre Wave and Terahertz Sensors and Technology >Millimetric Radiometry for Measuring Human and Porcine Skin Reflectance
【24h】

Millimetric Radiometry for Measuring Human and Porcine Skin Reflectance

机译:用于测量人和猪皮肤反射的毫米辐射测量

获取原文

摘要

Despite the rising interest in the human skin signature over the millimetre wave band there is relatively little information about the human skin reflectance and the dielectric properties of the human skin, and how these varying with locations and between gender, and hydration level of the skin. This paper has investigated the reflectance of the human skin over the frequency band 80-100 GHz, and comparing the reflectance of the human skin with the reflectance of porcine skin samples under normal and wet skin conditions. For a sample of 60 healthy participants (36 males and 24 females) the mean reflectance of the skin over all measurement locations was found to be ~0.606 with a standard deviation of ~0.086. The skin regions of the palm of the hand, the outer wrist and the dorsal forearm skin had reflectances 0.068, 0.058 and 0.0677 lower than the skin regions of the back of the hand, the inner wrist and the volar forearms respectively. Reflectance measurements of human skin under normal and wet state on the palm of the hand and the back of the hand regions indicate that the mean differences in the reflectance before and after the application of water is ~0.15 and ~0.075 respectively. A comparison in reflectance between human skin and porcine skin samples indicates similar trends in signatures between ex-vivo porcine skin samples and human skin. During the cycle of life, human skin is affected by many factors such as the age, the environment, the interaction with different types of radiation, genetic defects, dehydration, and accidents. These factors might cause diseases, temporal skin conditions, and permanent disorders. In response to this, the skin presents signatures, which can be measured using non-contact millimetre wave sensors that could quantify the degree of the damage. These unique findings enable millimetre wave radiometry to be used for detecting human skin signatures and anomalies under different conditions by identify unusually high or low levels of reflectance in tens of seconds.
机译:尽管在毫米波频段上对人体皮肤签名的兴趣升高,但是有关人体皮肤的肤色和人体皮肤的介电性质的信息,以及这些介电性质的信息如何变化与位置和性别之间的水合水平和皮肤水合水平。本文研究了人体皮肤在频段80-100GHz上的反射率,并在正常和湿皮肤条件下将人体皮肤的反射率与猪皮肤样品的反射率进行比较。对于60名健康参与者(36名男性和24名女性)的样本,发现皮肤对所有测量位置的平均反射率为约0.606,标准差为0.086。手掌的皮肤区域,外腕和背侧前臂皮肤的反射率为0.068,0.058和0.0677分别低于手背的皮肤区域,内部手腕和vlar前臂。在手掌上的正常和湿润状态下人体皮肤的反射率测量和手势的背面表明水在施加水之前和之后的反射率的平均差异分别为0.15〜0.075。人体皮肤和猪皮肤样品之间的反射率的比较表明了前体内猪皮肤样品和人体皮肤之间的签名趋势。在生命周期期间,人体皮肤受到许多因素的影响,如年龄,环境,与不同类型的辐射,遗传缺陷,脱水和事故的相互作用。这些因素可能会导致疾病,颞育病症和永久性疾病。响应于此,皮肤呈现签名,其可以使用可能量化损坏程度的非触点毫米波传感器来测量。这些独特的发现使毫米波辐射测定值能够用于通过在几十秒内识别异常高或低水平的反射率来检测不同条件下的人体皮肤签名和异常。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号