Relationship between Transparent Skin Tissue Image Shading and Skin Tissue Light Scattering Intensity

E. Sano, K. Awazu
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引用次数: 0

Abstract

To obtain a fingerprint pattern without being affected by protrusions and indentations on the skin surface is important for fingerprint identification. In our previous work, we discovered a fine structure corresponding to the fingerprint pattern in the stratum corneum and surrounding area from observation of OCT images, and developed a method which detects the light from the light source goes through a fine structure and create grayscale images corresponding to a fingerprint pattern. In this paper, to clarify the origins of the greyscale image, we propose a simple simulated model of the fine structure of different light scattering properties alternately arranged in the epidermis of finger skin. We calculated the light intensity distribution via a Monte Carlo simulation of light scattering with two parameter sets at 640 nm. We found that the light passing through this model created a greyscale image that corresponded to the epidermis structure.
透明皮肤组织图像阴影与皮肤组织光散射强度的关系
获得不受皮肤表面凸起和凹陷影响的指纹图案是指纹识别的重要内容。在之前的工作中,我们通过对OCT图像的观察,在角质层及周围区域发现了与指纹图案对应的精细结构,并开发了一种检测光源发出的光穿过精细结构并生成与指纹图案对应的灰度图像的方法。为了弄清灰度图像的来源,本文提出了手指皮肤表皮中不同光散射特性的精细结构交替排列的简单模拟模型。我们通过蒙特卡罗模拟计算了两个参数集在640 nm处的光散射的光强分布。我们发现,穿过这个模型的光产生了一个与表皮结构相对应的灰度图像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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