Special Topic — Traffic Accident and Injury · Research Paper P4

The Dynamic Visualization Application of 3ds Max in Organ Deceleration Injury

TAO Daiqin, QI Xuefeng, LI Kui, CHANG Hongfa, YIN Zhiyong

Forensic Science Seminar · 2013 · Volume 3 · Issue 1 · pp. 70–73

Peer ReviewedISSN 2157-118X Available online 1 January 2013Public PDF

Original Abstract

Abstract

Objective The dynamic visualization process of chest organs in the event of deceleration injury is to be constructed based on the PC in order to directly observe and und\erstand the injury process and mechanism of chest viscera in traffi c deceleration injury. Methods Firstly, combined with chest organ anatomy as well as the structure of spatial location and the abutting relationship, it constructed the main models of the chest organs and bones in the software of 3D Studio Max (version 2010) through the modeling method of edit mesh, mesh smoothing, UVW map and FFD, etc., to complete the 3D reconstruction and display of chest main organs. Secondly, based on the chest and abdomen high strength landing experimental conclusions, it completed the chest viscera injury process design through 3ds Max animation design principle and FFD software deformation technology. Results Using 33ds Max technology, (1) it has well reconstructed the main organ morphology and structure of the chest; (2) it can do arbitrary scaling, rotating and mobile display in the three-dimensional space; (3) the dynamic visualization is very close to the experimental process of thoracic deceleration injury; (4) it can do display and observation from different perspectives on injury process. Conclusions The 3D models reconstructed according to the real organ anatomy characteristics, are of strong sense of reality. Through the 3ds Max model visualization dynamic process, it can conveniently observe and understand the thoracic organ damage process and mechanism in the deceleration injury. It solves the visual problem and visual adjustment problems, to achieve a good simulation of three-dimensional effect.

Keywords: Forensic science; Traffic medicine; 3D studio max; Deceleration injury; Dynamics; Visualization; Organ; Model

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Authors & Publication

Article Details

Affiliations
  1. Institute of Forensic Science, Criminal Police Corps of Chongqing Public Security Bureau, Chongqing 400021, China.
  2. Chongqing Key Laboratory of Vehicle/Biological Crash Security, Research Institute for Traffic Medicine, Institute of Surgery Research, Daping Hospital, Third Military Medical University, Chongqing 400042, China.

Corresponding author: YIN Zhiyong · zyyin@cta.cq.cn

Received5 August 2012
Revised11 October 2012
Accepted15 October 2012
Available Online1 January 2013

Citation Information

Document codeP4 · Research Paper
JournalForensic Science Seminar
ISSN2157-118X
Volume / Issue3 / 1
Pages70–73
Publication date1 January 2013
Article HTMLhttps://fss.xxyy.info/journal/2013/2157118X.3.P4.html
Full text PDFhttps://fss.xxyy.info/journal/2013/2157118X.3.P4.pdf

Metadata Quality

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