期刊文献+

利用螺旋CT数据建立上颈椎三维有限元模型 被引量:2

Establishment of three-dimensional finite element model of human upper cervical vertebrae by spiral CT scans
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摘要 目的:建立上颈椎三维有限元模型,以期应用于临床相关的生物力学实验研究。方法:通过对正常人的CT薄层扫描获得原始DICOM图像数据,采用CAD数据处理技术进行计算机三维重建,改良建立的模型导进ANSYS9.0软件进行计算机模拟仿真生物力学研究。结果:所建模型外观清晰逼真,几何相似性好。三维重建结构可以单独或联合显示,甚至可行结构的任意取舍,重建结构的任意径线及角度均可进行适时三维测量。结论:该技术为临床医生对枕颈交界区有限元三维模型的建立提供了一种便捷而精确的方法,对计算机分析及研究该模型局部结构在各种受力情况下的生物力学表现创造条件。 To construct a three-dimensional (3D) finite element model of human upper cervical vertebrae that can be applied clinically to the biomechanical research. Methods The primary DICOM images of normal human upper cervical vertebrae obtained via thin slice CT scans were reconstruct in 3D on the computer using the CAD data processing technique. The modified model was used to simulate the emulated biomechanical research with the ANSYS 9.0 software. Results The appearance of the model was vivid with great geometrical similarity. The 3D reconstruction could display craniovertebral junction independently or jointly. Any diameter of the structures reconstructed could be measured discretionarily at any angle. Conclusions It is a convenient and precise method for physicians to establish the finite element model of the craniovertebral junction. This method facilitates the computer study on the biomechanical behavior of the local structures of the model under various pressure conditions.
出处 《实用医学杂志》 CAS 2007年第12期1779-1781,共3页 The Journal of Practical Medicine
基金 广东省自然科学基金团队项目(编号:20023001) 广东省科技计划项目(编号:2005B10401021)
关键词 颈椎 体层摄影术 X线计算机 三维有限元模型 Cervical vertebrae Tomography X-ray,computed Three-dimension finite element model
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参考文献17

  • 1Breakelmans W A,Poort H W,Slooff T J.A new method to analyze the mechanical of skeletal parts[J].Acta Orthop Scand,1972,43(5):301-306.
  • 2Belytschko T,Kulak R F,Schultz A B,et al.Finite element stress analysis of an intervertebral disc[J].J Biomechan,1974,7(3):277-285.
  • 3Yoganadan N,Kumaresan S,Voo L,et al.Finite element applications in human cervical spine modeling (Review)[J].Spine,1996,21(15):1824-1834.
  • 4Natarajan R N,Ke J H,Anderson G B.A model to study the disc degeneration process[J].Spine,1994,19(3):259-265.
  • 5Bozic K J,Keyak J H,Skinner H B.Three-dimensional finite element modeling of a cervical vertebra[J].J Spinal Disord,1994,7(2):102-110.
  • 6Bozic K J,Keyak J H,Skinner H B.Three-dimensional finite element modeling of a cervical vertebra[J].J Spinal Disord,1994,7(2):102-110.
  • 7Saito T,Yamamuro T,Shikata J,et al.Analysis and prevention of spinal column deformity following cervical laminectomy.I.Pathogenetic analysis of postlaminectomy deformities[J].Spine,1991,16(5):494-502.
  • 8Kleinberger M.Application of finite element techniques to the study of cervical spine mechanics[C]//Proceedings of the 37th Steppe Car Crash Conference.San Antonio Tesas,1993:7-8.
  • 9Panjabi M M.Cervical spine models for biomechanical research[J].Spine,1998,23(24):2684-2700.
  • 10李健,徐晖,程立明,高梁斌,张平,张美超.胸腰段椎体压缩性骨折三维有限元模型的建立及其意义[J].中国临床解剖学杂志,2005,23(2):199-201. 被引量:15

二级参考文献18

  • 1张绍祥,J Med Coll PLA,1990年,5卷,3期,203页
  • 2左焕琛,解剖学杂志,1986年,9卷,4期,237页
  • 3李叔梁,清华大学学报,1986年,26卷,4期,10页
  • 4陆惠民,解剖学报,1985年,16卷,3期,303页
  • 5许鹿希,解剖学通报,1984年,7卷,1期,1页
  • 6刘利君,中华小儿外科杂志,1998年,19卷,198页
  • 7Anne Polikeit, Lutz Peter Nolte, Stephen J, et al. The effect of cement augmentation on the load transfer in an osteoporotic functional spinal unit (finite-element analysis)[J]. Spine, 2003,28(10):991~996.
  • 8Michael A K Liebschner, David L Kopperdahl, William S Rosenberg, et al. Finite element modeling of the human thoracolumbar spine [J].Spine,2003,28(6):559~565.
  • 9Melton LJ. Epidemiology of spinal osteoporosis[J]. Spine, 1997, 22: S2~S11.
  • 10Ismall AA, Copper C, Felsenberg D, et al. Number and type of vertebral deformities: epidemiological characteristics and relation to back pain and height loss [C]. European Vertebral Osteoporosis Study Group,Osteoporos Int. 1999,9:206~213.

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