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首页> 外文期刊>Journal of Biophotonics >In vivo THz imaging of human skin: Accounting for occlusion effects
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In vivo THz imaging of human skin: Accounting for occlusion effects

机译:在人体皮肤的体内THz成像:占闭塞效应的核算

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>In vivo terahertz (THz) imaging of human skin needs to be done in reflection geometry due to the high attenuation of THz light by water in the skin. To aid the measurement procedure, there is typically an imaging window onto which the patient places the area of interest. The window enables better pulse alignment and helps keep the patient correctly positioned during the measurement. In this paper, we demonstrate how the occlusion caused by the skin contact with the imaging window during the measurement affects the THz response. By studying both rapid point measurements and imaging over an area of a human volar forearm, we find that even 5?seconds of occlusion affects the THz response. As the occlusion time increases, the skin surface water content increases, resulting in the reduction of the amplitude of the reflected THz pulse, especially in the first 3?minutes. Furthermore, it was found that the refractive index of the volar forearm increased by 10% to 15% after 20?minutes of occlusion. In this work, we examine and propose a model for the occlusion effects due to the quartz window with a view to compensating for its influence.
机译: 在体内Terahertz(Thz)的成像,需要在皮肤中的水中的水中的高衰减,以反射几何形状进行。为了帮助测量程序,通常存在患者在该成像窗口上占据感兴趣区域。该窗口可实现更好的脉冲对齐,并有助于将患者保持在测量期间正确定位。在本文中,我们展示了在测量期间与成像窗口引起的闭塞如何影响THZ响应。通过研究快速点测量和在人vlar前臂的区域上成像,我们发现即使是5?几秒钟的遮挡影响了THZ反应。随着闭塞时间的增加,皮肤表面含水量增加,导致反射THz脉冲的幅度降低,特别是在前3?分钟内。此外,发现vlar前臂的折射率在20?次闭塞后增加了10%至15%。在这项工作中,我们检查并提出由于石英窗口引起的遮挡效应模型,以补偿其影响。

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