首页> 外文会议>Conference on three-dimensional image processing, measurement, and applications >Digitized crime scene forensics: Automated trace separation of toolmarks on high-resolution 2D/3D CLSM surface data
【24h】

Digitized crime scene forensics: Automated trace separation of toolmarks on high-resolution 2D/3D CLSM surface data

机译:数字化犯罪现场取证:在高分辨率2D / 3D CLSM表面数据上自动痕迹分离工具标记

获取原文

摘要

Locksmith forensics is an important and very challenging part of classic crime scene forensics. In prior work, we propose a partial transfer to the digital domain, to effectively support forensic experts and present approaches for a full process chain consisting of five steps: Trace positioning, 2D/3D acquisition with a confocal 3D laser scanning microscope, detection by segmentation, trace type determination, and determination of the opening method. In particular the step of trace segmentation on high-resolution 3D surfaces thereby turned out to be the part most difficult to implement. The reason for that is the highly structured and complex surfaces to be analyzed. These surfaces are cluttered with a high number of toolmarks, which overlap and distort each other. In Clausing et al., we present an improved approach for a reliable segmentation of relevant trace regions but without the possibility of separating single traces out of segmented trace regions. However, in our past research, especially features based on shape and dimension turned out to be highly relevant for a fully automated analysis and interpretation. In this paper, we consequently propose an approach for this separation. To achieve this goal, we use our segmentation approach and expand it with a combination of the watershed algorithm4 with a graph-based analysis. Found sub-regions are compared based on their surface character and are connected or divided depending on their similarity. We evaluate our approach with a test set of about 1,300 single traces on the exemplary locking cylinder component 'key pin' and thereby are able of showing the high suitability of our approach.
机译:锁匠取证是经典犯罪现场取证的重要且非常具有挑战性的部分。在先前的工作中,我们建议部分转移到数字领域,以有效地支持法医专家,并提出包括五个步骤的完整过程链的方法:跟踪定位,使用共聚焦3D激光扫描显微镜进行2D / 3D采集,通过分段进行检测,迹线类型确定以及打开方法的确定。尤其是,在高分辨率3D表面上进行轨迹分割的步骤因此成为最难实现的部分。其原因是要分析的结构高度复杂的表面。这些表面布满大量的工具标记,这些工具标记相互重叠和变形。在Clausing等人中,我们提出了一种对相关迹线区域进行可靠分割的改进方法,但是没有将单个迹线从分割迹线区域中分离出来的可能性。但是,在我们过去的研究中,尤其是基于形状和尺寸的特征与全自动分析和解释高度相关。因此,在本文中,我们提出了一种用于这种分离的方法。为了实现此目标,我们使用了分割方法,并将分水岭算法4与基于图的分析相结合进行了扩展。根据发现的子区域的表面特征进行比较,并根据其相似性进行连接或划分。我们通过在示例性锁芯部件“钥匙销”上测试约1300条单迹线来评估我们的方法,从而能够证明我们方法的高度适用性。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号