›› 2017, Vol. 33 ›› Issue (6): 575-580.DOI: 10.3969/j.issn.1004-5619.2017.06.001

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Reconstruction of Vehicle-human Crash Accident and Injury Analysis Based on 3D Laser Scanning, Multi-rigid-body Reconstruction and Optimized Genetic Algorithm

SUN JIE1,2, WANG TAO3, LI ZHENG-DONG2, SHAO YU2, ZHANG ZHI-YONG2, FENG HAO2, ZOU DONG-HUA2, CHEN YI-JIU2   

  1. (1. Department of Forensic Medicine, Shanghai Medical College, Fudan University, Shanghai 200032, China; 2. Shanghai Key Laboratory of Forensic Medicine, Shanghai Forensic Service Platform, Academy of Forensic Science, Shanghai 200063, China; 3. Institute of Criminal Science and Technology, Songjiang Branch of Shanghai Public Security Bureau, Shanghai 201600, China)
  • Online:2017-12-25 Published:2017-12-28

Abstract: Abstract: Objective To reconstruct a vehicle-bicycle-cyclist crash accident and analyse the injuries using 3D laser scanning technology, multi-rigid-body dynamics and optimized genetic algorithm, and to provide biomechanical basis for the forensic identification of death cause. Methods The vehicle was measured by 3D laser scanning technology. The multi-rigid-body models of cyclist, bicycle and vehicle were developed based on the measurements. The value range of optimal variables was set. A multi-objective genetic algorithm and the nondominated sorting genetic algorithm were used to find the optimal solutions, which were compared to the record of the surveillance video around the accident scene. Results The reconstruction result of laser scanning on vehicle was satisfactory. In the optimal solutions found by optimization method of genetic algorithm, the dynamical behaviours of dummy, bicycle and vehicle corresponded to that recorded by the surveillance video. The injury parameters of dummy were consistent with the situation and position of the real injuries on the cyclist in accident. Conclusion The motion status before accident, damage process by crash and mechanical analysis on the injury of the victim can be reconstructed using 3D laser scanning technology, multi-rigid-body dynamics and optimized genetic algorithm, which have application value in the identification of injury manner and analysis of death cause in traffic accidents.

Key words: forensic pathology, biomechanics, rigid multibody dynamics, image processing, computer-assisted, accidents, traffic, genetic algorithm, 3D laser scanning technology

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