期刊文献+

基于挥鞭样损伤研究的颈部有限元模型的建立及验证 被引量:11

Development and Validation of a Human Neck FE Model for Whiplash Study
暂未订购
导出
摘要 研究人体颈部在挥鞭样损伤中的生物力学特性及损伤机制,建立一个基于人体解剖学结构的颈部三维有限元模型。该模型是通过人体颈部的螺旋CT扫描图像,利用三维重建和网格划分技术,得到六面体有限元模型,并对模型进行后碰撞验证分析。得出颈椎在挥鞭运动过程中的变化规律,以及C7-T1的最大过伸角度20°和椎间盘所受最大应力值16MPa。该模型的建立,可作为今后颈椎生物力学损伤研究以及其他相关领域研究的理论研究依据。 A detailed three-dimensional neck finite element (FE) model was developed based on the human anatomy structure for the whiplash study and analysis of injury mechanism. The model was developed from CT scan images by the technologies of three-dimensional reconstruction, image processing and meshing. The model was validated in rear- end collision. The highest extension angle (about 20°) of the C7-T1 segment and the ultimate stress at C7-T1 disc (about 16 MPa) was obtained, and the movement rule was analized as well. The model was expected to provide a theoretical explanation for the further study of the biomechanics of the human neck and the other relative fields.
出处 《中国生物医学工程学报》 CAS CSCD 北大核心 2008年第3期389-392,共4页 Chinese Journal of Biomedical Engineering
基金 863计划项目(2006AA040201)
关键词 有限元 颈椎 挥鞭损伤 finite element neck whiplash injury
  • 相关文献

参考文献10

  • 1Spitzer WO,Skovron ML,Salmi LR, et al . Scientific monograph of the Quebec Task Force on Whiplash-associated Disorder: redefining "whiplash"and its manage-ment [J]. Spine,1995,20(8) :975 -980.
  • 2Stemper BD, Yoganandan N, Pintar FA. Effects of abnormal posture on capsular ligament elongations in a computational model subjected to whiplash loading [J]. Journal of Biomechanics, 2005, 38:1313 - 1323.
  • 3Zhang Qinghang, Teo EC, Ng H. Finite element analysis of moment-retation relationships for human cervical spine [J]. Journal of Biomechanics, 2004, 39:189 - 193.
  • 4Zhang Qinghang, Teo EC, Ng H. Development and Validation of A CO-C7 FE Complex for Biomechanical Study [ J ]. Journal of Biomechanical Engineering, 2005, 127:731-732.
  • 5Teo EC, Ng H. First cervical vertebra fracture mechanism studies using finite element method [J]. Journal of Biomechanics, 2001, 34:13 - 21.
  • 6杨济匡,姚剑峰.人体颈部动力学响应分析有限元模型的建立和验证[J].湖南大学学报(自然科学版),2003,30(4):40-46. 被引量:30
  • 7杨济匡,许伟,万鑫铭.研究汽车碰撞中头颈部动态响应的有限元模型的建立和验证[J].湖南大学学报(自然科学版),2005,32(2):6-12. 被引量:28
  • 8Teo EC, Zhang Qinghang, Lee PVS, et al. FE analysis of headneck responses during whiplash [J]. INFATS Proceedings, 2004, 10:151 - 156.
  • 9戴力扬.挥鞭样损伤的生物力学[J].医用生物力学,2002,17(4):248-252. 被引量:16
  • 10Ohengren T, Hansson HA, Lovsund P, et al. Membrane leakage in spinal ganglion nerve cells induced by experimental whiplash extension motion : a study in pigs [J]. J Neurotrauma, 1996,13 ( 3 ) : 171 - 177.

二级参考文献56

  • 1KOCH M, TINGVALL C. Impairment Pattern In Passenger Car Crashes, a Follow-up of Injuries Resulting in Long term Consequences[A]. Proc of the ESV Conference[C]. Munich. 1994.
  • 2O' NElL B. Head Restraints - The neglected Countermeasure[J]. Accident Analysis & Prevention, 2000,32 (2) : 143 - 150.
  • 3RYAN G, GIBSON T. Field Studies of Whiplash in Australia, in Frontiers in whiplash Trauma: Clinical & Biomechanical [ M ].Amsterdam: ISO Press, 2000.
  • 4EWING Cl, LUSTICK L. The Effect of initial position of the head and neck on the dynamic response of the human head and neck to - Gx impact acceleration[A]. Proc of the 19th Stapp Car Crash Conference[C]. San Diego, CA, 1975.
  • 5EWING CI, LUSTICK L. The effect of duration, rate of onset,and peak sled acceleration of the dynamic response of the human head and the neck[A]. Proc of the 20th Stapp Car Crash Conference[C]. Dearborn, MI, 1976.
  • 6MUZZY W, WILLEMS G. The effect of mass distribution parameters on head/neck dynamic response[A]. Proc of the 30th Stapp Car Crash Conference[C]. San Diego, CA, 1986.
  • 7VIANO D. Influence of seatback angle on occupant dynamics in simulated rear - end impact [ A ]. Proc of the 36th Stapp Car Crash Conference[C]. Seattle, WA, 1992.
  • 8VIANO D. Restraint of a belted or unbelted occupant by the seat in Rear- end impacts[A]. Proc of the 36th Stapp Car Crash Conference[C]. Seattle, WA, 1992.
  • 9Livermore Software Technology Corporation. LS - DYNA Theory Manual. May 1998.
  • 10TEO E, NG H. First cervical vertebra fracture mechanism studies using finite element method[J ]. Journal of Biomechanics, 2001,34:13-21.

共引文献63

同被引文献165

引证文献11

二级引证文献46

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部