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Three-dimensional surface topography acquisition and analysis for firearm identification.

机译:三维表面地形采集和枪支识别分析。

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摘要

In the last decade, computer-based systems for the comparison of microscopic firearms evidence have been the subject of considerable research work because of their expected capability of supporting the firearms examiner through the automated analysis of large amounts of evidence. The Integrated Ballistics Identification System, which is based on a two-dimensional representation of the specimen surface, has been widely adopted in forensic laboratories worldwide. More recently, some attempts to develop systems based on three-dimensional (3D) representations of the specimen surface have been made, both in the literature and as industrial products, such as BulletTRAX-3D, but fundamental limitations in achieving fully automated identification remain. This work analyzes the advantages and disadvantages of a 3D-based approach by proposing an approach and a prototype system for firearms evidence comparison that is based on the acquisition and analysis of the 3D surface topography of specimens, with particular reference to cartridge cases. The concept of 3D virtual comparison microscope is introduced, whose purpose is not to provide fully automated identification, but to show how the availability of 3D shape information can provide a whole new set of verification means, some of them being described and discussed in this work, specifically, visual enhancement tools and quantitative measurement of shape properties, for supporting, not replacing, the firearm examiner in reaching the final decision.
机译:在过去的十年中,用于比较枪支微观证据的基于计算机的系统已经成为大量研究工作的主题,因为它们有望通过自动分析大量证据来支持枪支审查员。基于标本表面的二维表示的综合弹道识别系统已在全世界的法医实验室中广泛采用。最近,无论是在文献中还是在工业产品(例如BulletTRAX-3D)中,都进行了一些尝试来开发基于样品表面的三维(3D)表示的系统,但是在实现全自动识别方面仍然存在一些基本限制。这项工作通过提出一种用于枪支证据比较的方法和原型系统,分析了基于3D方法的优缺点,该系统和方法基于对标本的3D表面形貌的获取和分析,特别是针对弹壳的分析。引入了3D虚拟比较显微镜的概念,其目的不是提供全自动识别,而是显示3D形状信息的可用性如何提供全新的验证方法集,其中一些在本文中进行了描述和讨论。 ,尤其是视觉增强工具和形状属性的定量测量,用于支持(而不是代替)枪支检查员做出最终决定。

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