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腰椎椎间融合相邻椎间盘的应力分析

Stress analysis of the disc adjacent to interbody fusion in lumbar spine.

作者信息

Chen C S, Cheng C K, Liu C L, Lo W H

机构信息

Orthopaedic Biomechanics Laboratory, Institute of Biomedical Engineering, National Yang-Ming University, 155 Sec 2, Li-Nung St, Shih-Pai, Taipei, Taiwan.

出版信息

Med Eng Phys. 2001 Sep;23(7):483-91. doi: 10.1016/s1350-4533(01)00076-5.

Abstract

After anterior interbody fusion in the lumbar spine, the accelerated degeneration of the disc adjacent to the fusion levels was clinically observed. To understand the stress distribution of the adjacent disc, this study created a finite element model of the lumbar spine from L1-L5 vertebral body. The fusion model modified from the intact model was used to simulate the anterior interbody fusion. Various loading conditions, which included flexion, extension, lateral bending, and torsion, were applied to the finite element model to study the corresponding stress distribution. From the finite element model calculation, at a lower fusion site or more fusion levels, the stress of the disc adjacent to interbody fusion increased more than upper fusion site or single fusion level under flexion, torsion and lateral bending. Larger stress increase was estimated at the upper disc adjacent to interbody fusion than the lower disc adjacent to interbody fusion. In stress distribution, the upper disc adjacent to interbody fusion had a little alteration under torsion.

摘要

腰椎前路椎间融合术后,临床上观察到融合节段相邻椎间盘加速退变。为了解相邻椎间盘的应力分布,本研究建立了包含L1-L5椎体的腰椎有限元模型。从完整模型修改而来的融合模型用于模拟前路椎间融合。将包括前屈、后伸、侧屈和扭转在内的各种加载条件应用于有限元模型,以研究相应的应力分布。通过有限元模型计算,在较低的融合部位或更多的融合节段,椎间融合相邻椎间盘在屈曲、扭转和侧屈时的应力增加幅度大于较高的融合部位或单个融合节段。据估计,椎间融合相邻上椎间盘的应力增加幅度大于相邻下椎间盘。在应力分布方面,椎间融合相邻上椎间盘在扭转时略有改变。

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