Literature DB >> 15260097

Analysis of the effect of lumbar spine fusion on the superior adjacent intervertebral disk in the presence of disk degeneration, using the three-dimensional finite element method.

Etsuo Chosa1, Keisuke Goto, Koji Totoribe, Naoya Tajima.   

Abstract

The purpose of this study was to analyze the effect of lumbar spine fusion on the superior adjacent intervertebral disk in the context of disk degeneration, using a nonlinear three-dimensional finite element method. Detailed L3-L5 motion segment models of normal and degenerated intervertebral disks were developed. In fusion models, L4-L5 was fixed by either posterolateral fusion or posterior lumbar interbody fusion (PLIF). Various loading conditions such as compression loading, compression loading plus flexion moment loading, or compression loading plus extension moment loading were applied to study the corresponding stress. Tresca stress on the posterolateral part of intervertebral annulus fiber and von Mises stress on the vertebral endplate (the superior and inferior sides of L3 and L4) were reduced in all degenerated disk models compared with the normal disk models. The PLIF model showed an increase in the percentage change of stress on the vertebral endplate and on the intervertebral annulus fibrosus when flexion and extension moment loadings were applied. This finding suggests that surgeons should consider the risk of exacerbating degeneration of intervertebral disks by undertaking lumbar spine fusion, when degeneration is found in intervertebral disks adjacent to vertebrae requiring fusion.

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Year:  2004        PMID: 15260097     DOI: 10.1097/00024720-200404000-00010

Source DB:  PubMed          Journal:  J Spinal Disord Tech        ISSN: 1536-0652


  11 in total

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Journal:  J Mater Sci Mater Med       Date:  2015-01-18       Impact factor: 3.896

4.  The association between Roussouly sagittal alignment type and risk for adjacent segment degeneration following short-segment lumbar interbody fusion: a retrospective cohort study.

Authors:  Zhe Qu; Bin Deng; Xiao Gao; Bin Pan; Wei Sun; Hu Feng
Journal:  BMC Musculoskelet Disord       Date:  2022-07-08       Impact factor: 2.562

5.  Biomechanical evaluation of three surgical scenarios of posterior lumbar interbody fusion by finite element analysis.

Authors:  Zhitao Xiao; Liya Wang; He Gong; Dong Zhu
Journal:  Biomed Eng Online       Date:  2012-06-18       Impact factor: 2.819

6.  Flexible Stabilisation of the Degenerative Lumbar Spine Using PEEK Rods.

Authors:  Jacques Benezech; Bruno Garlenq; Gilles Larroque
Journal:  Adv Orthop       Date:  2016-02-15

7.  Biomechanical Comparison of Spinal Fusion Methods Using Interspinous Process Compressor and Pedicle Screw Fixation System Based on Finite Element Method.

Authors:  Jisoo Choi; Sohee Kim; Dong-Ah Shin
Journal:  J Korean Neurosurg Soc       Date:  2016-02-29

8.  Is Preventative Long-Segment Surgery for Multi-Level Spondylolysis Necessary? A Finite Element Analysis Study.

Authors:  Jianqiang Mo; Wen Zhang; Dongyan Zhong; Hao Xu; Lan Wang; Jia Yu; Zongping Luo
Journal:  PLoS One       Date:  2016-02-26       Impact factor: 3.240

9.  Treatment of thoracolumbar burst fractures by short-segment pedicle screw fixation using a combination of two additional pedicle screws and vertebroplasty at the level of the fracture: a finite element analysis.

Authors:  Jen-Chung Liao; Weng-Pin Chen; Hao Wang
Journal:  BMC Musculoskelet Disord       Date:  2017-06-15       Impact factor: 2.362

10.  Relationship between postoperative lordosis distribution index and adjacent segment disease following L4-S1 posterior lumbar interbody fusion.

Authors:  Guoquan Zheng; Chunguo Wang; Tianhao Wang; Wenhao Hu; Quanbo Ji; Fanqi Hu; Jianrui Li; Surendra K Chaudhary; Kai Song; Diyu Song; Zhifa Zhang; Yongyu Hao; Yao Wang; Jing Li; Qingyuan Zheng; Xuesong Zhang; Yan Wang
Journal:  J Orthop Surg Res       Date:  2020-04-03       Impact factor: 2.359

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