首页> 外文期刊>Journal of forensic sciences. >VIRTOPSY--scientific documentation, reconstruction and animation in forensic: individual and real 3D data based geo-metric approach including optical body/object surface and radiological CT/MRI scanning.
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VIRTOPSY--scientific documentation, reconstruction and animation in forensic: individual and real 3D data based geo-metric approach including optical body/object surface and radiological CT/MRI scanning.

机译:VIRTOPSY-法医的科学文档,重建和动画制作:基于个体和真实3D数据的几何方法,包括光学物体/物体表面以及放射线CT / MRI扫描。

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Until today, most of the documentation of forensic relevant medical findings is limited to traditional 2D photography, 2D conventional radiographs, sketches and verbal description. There are still some limitations of the classic documentation in forensic science especially if a 3D documentation is necessary. The goal of this paper is to demonstrate new 3D real data based geo-metric technology approaches. This paper present approaches to a 3D geo-metric documentation of injuries on the body surface and internal injuries in the living and deceased cases. Using modern imaging methods such as photogrammetry, optical surface and radiological CT/MRI scanning in combination it could be demonstrated that a real, full 3D data based individual documentation of the body surface and internal structures is possible in a non-invasive and non-destructive manner. Using the data merging/fusing and animation possibilities, it is possible to answer reconstructive questions of the dynamic development of patterned injuries(morphologic imprints) and to evaluate the possibility, that they are matchable or linkable to suspected injury-causing instruments. For the first time, to our knowledge, the method of optical and radiological 3D scanning was used to document the forensic relevant injuries of human body in combination with vehicle damages. By this complementary documentation approach, individual forensic real data based analysis and animation were possible linking body injuries to vehicle deformations or damages. These data allow conclusions to be drawn for automobile accident research, optimization of vehicle safety (pedestrian and passenger) and for further development of crash dummies. Real 3D data based documentation opens a new horizon for scientific reconstruction and animation by bringing added value and a real quality improvement in forensic science.
机译:直到今天,法医相关医学发现的大部分文档仅限于传统的2D摄影,2D的传统X射线照片,草图和口头描述。法医科学中的经典文档仍然存在一些局限性,特别是在需要3D文档的情况下。本文的目的是演示新的基于3D真实数据的地理技术方法。本文介绍了一种3D几何记录的方法,用于记录身体表面受伤以及在生和死者身上的内部伤害。结合摄影测量法,光学表面法和放射线CT / MRI扫描法等现代成像方法,可以证明基于真实,完整3D数据的体表和内部结构的单独文档化是可能的,并且是无创且无损的方式。使用数据合并/融合和动画可能性,可以回答模式伤害(形态印记)的动态发展的重构性问题,并评估它们是否可与可疑伤害工具匹配或链接的可能性。据我们所知,光学和放射学3D扫描方法首次被用来记录法医相关的人体伤害以及车辆损坏。通过这种补充的文档方法,可以将基于个人法医真实数据的分析和动画联系起来,将身体伤害与车辆变形或损坏联系起来。这些数据可以得出结论,以进行汽车事故研究,优化车辆安全性(行人和乘客)以及进一步开发碰撞假人。基于真实3D数据的文档通过为鉴识科学带来附加值和真正的质量改进,为科学重建和动画创作开辟了新视野。

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