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本文引用的文献

1
Biomechanics of the lumbar spine after dynamic stabilization.动态稳定后腰椎的生物力学
J Spinal Disord Tech. 2007 Aug;20(6):423-9. doi: 10.1097/bsd.0b013e318031af6f.
2
Comparison of animals used in disc research to human lumbar disc geometry.用于椎间盘研究的动物与人类腰椎间盘几何形状的比较。
Spine (Phila Pa 1976). 2007 Feb 1;32(3):328-33. doi: 10.1097/01.brs.0000253961.40910.c1.
3
Application of a calibration method provides more realistic results for a finite element model of a lumbar spinal segment.校准方法的应用为腰椎节段的有限元模型提供了更实际的结果。
Clin Biomech (Bristol). 2007 May;22(4):377-84. doi: 10.1016/j.clinbiomech.2006.11.008. Epub 2007 Jan 3.
4
Biomechanical analysis of cages for posterior lumbar interbody fusion.腰椎后路椎间融合器的生物力学分析
Med Eng Phys. 2007 Jan;29(1):101-9. doi: 10.1016/j.medengphy.2006.02.007. Epub 2006 Mar 23.
5
Relationship between CT intensity, micro-architecture and mechanical properties of porcine vertebral cancellous bone.猪椎体松质骨的CT密度、微观结构与力学性能之间的关系
Clin Biomech (Bristol). 2006 Mar;21(3):235-44. doi: 10.1016/j.clinbiomech.2005.11.001. Epub 2005 Dec 13.
6
Modulation of bone turnover by alfacalcidol and/or alendronate does not prevent glucocorticoid-induced osteoporosis in growing minipigs.阿法骨化醇和/或阿仑膦酸钠对骨转换的调节不能预防生长中的小型猪糖皮质激素诱导的骨质疏松症。
J Bone Miner Metab. 2005;23(5):341-50. doi: 10.1007/s00774-005-0611-x.
7
A homogenization model of the annulus fibrosus.纤维环的均质化模型。
J Biomech. 2005 Aug;38(8):1674-84. doi: 10.1016/j.jbiomech.2004.07.017.
8
Spatial and structural dependence of mechanical properties of porcine intervertebral disc.猪椎间盘力学性能的空间和结构依赖性
J Mater Sci Mater Med. 2002 Dec;13(12):1277-80. doi: 10.1023/a:1021143516436.
9
Biomechanical role of lumbar spine ligaments in flexion and extension: determination using a parallel linkage robot and a porcine model.腰椎韧带在屈伸过程中的生物力学作用:使用平行连杆机器人和猪模型进行测定
Spine (Phila Pa 1976). 2004 Jun 1;29(11):1208-16. doi: 10.1097/00007632-200406010-00010.
10
Representation of passive spinal element contributions to in vitro flexion-extension using a polynomial model: illustration using the porcine lumbar spine.
J Biomech. 2003 Jun;36(6):883-8. doi: 10.1016/s0021-9290(02)00479-7.

脊柱研究中的猪模型:屈伸过程中各种构型的校准及比较有限元分析

Porcine models in spinal research: calibration and comparative finite element analysis of various configurations during flexion-extension.

作者信息

Aziz Hadi N, Galbusera Fabio, Bellini Chiara Maria, Mineo Giuseppe Vincenzo, Addis Alessandro, Pietrabissa Riccardo, Brayda-Bruno Marco

机构信息

IRCCS Galeazzi Orthopaedic Institute, Milan, Italy.

出版信息

Comp Med. 2008 Apr;58(2):174-9.

PMID:18524176
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2703168/
Abstract

This study was conducted to develop and calibrate a detailed 3-dimensional finite element model of the porcine lumbar spine and to compare this model with various configurations in flexion and extension. Computed tomography scans obtained from the L4-L5 lumbar segment of a Landrace x Large White pig were used to generate a solid volume. The various passive components were characterized by using a step-by-step calibration procedure in which the material properties of the anatomic structures were modified to match the corresponding in vitro data set-points retrieved from the literature. The range of motion of the totally assembled intact model was assessed under a 10-Nm flexion-extension moment and compared with data from a bilateral complete and hemifacetectomy configuration. In addition, the results from our porcine model were compared with published data regarding range of motion in a human finite element model in order to predict the configuration of the porcine model that most closely represented the human spine. Both the intact and hemifacetectomy configurations of the porcine model were comparable to the human spine. However, qualitative analysis of the instantaneous axis of rotation revealed a dissimilarity between the intact porcine model and human spine behavior, indicating the hemifacetectomy configuration of the porcine model as the most appropriate for spinal instrumentation studies. The present 3-dimensional finite element porcine model offers an additional tool to improve understanding of the biomechanics of the porcine spine and to decrease the expense of spinal research.

摘要

本研究旨在开发并校准猪腰椎的详细三维有限元模型,并将该模型与不同屈伸配置进行比较。使用从长白猪×大白猪的L4-L5腰椎节段获得的计算机断层扫描来生成实体模型。通过逐步校准程序对各种被动组件进行表征,其中对解剖结构的材料属性进行修改,以匹配从文献中检索到的相应体外数据集点。在10 N·m的屈伸力矩下评估完全组装好的完整模型的活动范围,并与双侧全椎板切除术和半椎板切除术配置的数据进行比较。此外,将我们猪模型的结果与已发表的关于人类有限元模型活动范围的数据进行比较,以预测最能代表人类脊柱的猪模型配置。猪模型的完整配置和半椎板切除术配置均与人类脊柱相当。然而,对瞬时旋转轴的定性分析表明,完整猪模型与人类脊柱行为之间存在差异,这表明猪模型的半椎板切除术配置最适合脊柱器械研究。目前的三维有限元猪模型提供了一个额外的工具,有助于增进对猪脊柱生物力学的理解,并降低脊柱研究的成本。