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Hyperspectral Imaging of Bruised Skin

机译:瘀伤皮肤的高光谱成像

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摘要

Bruises can be important evidence in legal medicine, for example in cases of child abuse. Optical techniques can be used to discriminate and quantify the chromophores present in bruised skin, and thereby aid dating of an injury. However, spectroscopic techniques provide only average chromophore concentrations for the sampled volume, and contain little information about the spatial chromophore distribution in the bruise. Hyperspectral imaging combines the power of imaging and spectroscopy, and can provide both spectroscopic and spatial information. In this study a hyperspectral imaging system developed by Norsk Elektro Optikk AS was used to measure the temporal development of bruised skin in a human volunteer. The bruises were inflicted by paintball bullets. The wavelength ranges used were 400-1000 nm (VNIR) and 900-1700 nm (SWIR), and the spectral sampling intervals were 3.7 and 5 nm, respectively. Preliminary results show good spatial discrimination of the bruised areas compared to normal skin. Development of a white spot can be seen in the central zone of the bruises. This central white zone was found to resemble the shape of the object hitting the skin, and is believed to develop in areas where the impact caused vessel damage. These results show that hyperspectral imaging is a promising technique to evaluate the temporal and spatial development of bruises on human skin.
机译:瘀伤可能是合法医学中的重要证据,例如在虐待儿童的情况下。光学技术可用于区分和定量瘀伤皮肤中存在的生色团,从而帮助确定损伤日期。然而,光谱技术仅提供采样体积的平均生色团浓度,并且几乎没有关于瘀伤中空间生色团分布的信息。高光谱成像结合了成像和光谱学的强大功能,可以提供光谱和空间信息。在这项研究中,由Norsk Elektro Optikk AS开发的高光谱成像系统用于测量人类志愿者皮肤瘀伤的时间变化。彩弹射击造成了瘀伤。使用的波长范围是400-1000 nm(VNIR)和900-1700 nm(SWIR),光谱采样间隔分别是3.7和5 nm。初步结果显示,与正常皮肤相比,瘀伤区域具有良好的空间辨别力。在青肿的中心区域可以看到白色斑点的发展。发现该中央的白色区域类似于撞击皮肤的物体的形状,并且据信会在撞击导致血管损坏的区域发展。这些结果表明,高光谱成像是评估人体皮肤挫伤的时空发展的有前途的技术。

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