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胸腰椎爆裂性骨折椎管内骨块形成机制的生物力学研究
引用本文:曾至立,程黎明,朱睿,李山珠,于研,王建杰,贾永伟,陈博.胸腰椎爆裂性骨折椎管内骨块形成机制的生物力学研究[J].中华医学杂志(英文版),2013,126(15):2852-2858.
作者姓名:曾至立  程黎明  朱睿  李山珠  于研  王建杰  贾永伟  陈博
作者单位:Shanghai Tongji Hospital,Tongji University School of Medicine,Shanghai Tongji Hospital,Tongji University School of Medicine,Shanghai Tongji Hospital,Tongji University School of Medicine,Shanghai Tongji Hospital,Tongji University School of Medicine,Shanghai Tongji Hospital,Tongji University School of Medicine,Shanghai Tongji Hospital,Tongji University School of Medicine,Shanghai Tongji Hospital,Tongji University School of Medicine,School of Life Science and Technology, Tongji University
基金项目:National Natural Science Foundation of China (No. 30973034),Key Pillar Program in the Shanghai Municipality Science
摘    要:
Background Thoracolumbar burst fracture is a common clinical injury, and the fracture mechanism is still controversial. The aim of this research was to study the formation of intracanal fracture fragments in thoracolumbar burst fractures and to provide information for the prevention of thoracolumbar bursts fractures and reduction of damage to the nervous system.
Methods A nonlinear three-dimensional finite element model of T11–L3 segments was established, and the injury processes of thoracolumbar bursts were simulated. The intact finite element model and the finite element model after the superior articular were impacted by 100 J of energy in different directions. The distribution and variation of stress in the superior posterior region of the L1 vertebral body were analyzed. Abaqus 6.9 explicit dynamic solver was used as finite element software in calculations.
Results A three-dimensional nonlinear finite element model of the thoracolumbar spine was created. In the intact model, stress was concentrated in the superior posterior region of the L1 vertebral body. The stress peak was a maximum for the extension impact load and a minimum for the flexion impact load. The stress peak and contact force in the facet joint had close correlation with time. The stress peak disappeared after excision of the superior articular process.Conclusions The three-dimensional nonlinear finite element model was suitable for dynamic analysis. The contact force in the facet joint, which can be transferred to the superior posterior vertebral body, may explain the spinal canal fragment in thoracolumbar burst fractures.


关 键 词:三维有限元模型  爆裂性  骨折  腰椎  机制  三维非线性  有限元计算软件  折断
修稿时间:8/5/2013 12:00:00 AM

Formative mechanism of intracanal fracture fragments in thoracolumbar burst fractures: a finite element study
ZENG Zhi-li,ZHU Rui,LI Shan-zhu,YU Yan,WANG Jian-jie,JIA Yong-wei,CHEN Bo and CHENG Li-ming.Formative mechanism of intracanal fracture fragments in thoracolumbar burst fractures: a finite element study[J].Chinese Medical Journal,2013,126(15):2852-2858.
Authors:ZENG Zhi-li  ZHU Rui  LI Shan-zhu  YU Yan  WANG Jian-jie  JIA Yong-wei  CHEN Bo and CHENG Li-ming
Abstract:
Keywords:thoracolumbar vertebra  burst fracture  finite element model  injury
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