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Rapid Localization of Bone Fragments on Surfaces using Back-Projection and Hyperspectral Imaging

机译:使用反向投影和高光谱成像在表面上对骨碎片进行快速定位

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摘要

Manual localization of bone fragments on the ground or on complex surfaces in relation to accidents or criminal activity may be time-consuming and challenging. It is here investigated whether combining a near-infrared hyperspectral camera and chemometric modeling with false color back-projection can be used for rapid localization of bone fragments. The approach is noninvasive and highlights the spatial distribution of various compounds/properties to facilitate manual inspection of surfaces. Discriminant partial least squares regression is used to classify between bone and nonbone spectra from the hyperspectral camera. A predictive model (>95% prediction ability) is constructed from raw chicken bones mixed with stone, sand, leaves, moss, and wood. The model uses features in the near-infrared spectrum which may be selective for bones in general and is able to identify a wide variety of bones from different animals and contexts, including aged and weathered bone.
机译:手动定位与事故或犯罪活动相关的地面或复杂表面上的骨碎片可能既耗时又具有挑战性。在此研究是否可以将近红外高光谱相机和化学计量学模型与假彩色反投影相结合,以用于骨碎片的快速定位。该方法是非侵入性的,并突出了各种化合物/特性的空间分布,以利于手动检查表面。判别式偏最小二乘回归用于对来自高光谱相机的骨骼和非骨骼光谱进行分类。预测模型(预测能力> 95%)是由原始的鸡骨头,石头,沙子,树叶,苔藓和木头混合而成的。该模型使用近红外光谱中的特征,这些特征通常对骨骼具有选择性,并且能够识别来自不同动物和环境的多种骨骼,包括老化和风化的骨骼。

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