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Adjacent-level biomechanics after single-level anterior cervical interbody fusion with anchored zero-profile spacer versus cage-plate construct: a finite element study

机译:单级前颈椎间融合后的相邻水平生物力学与锚定零件间隔件与笼板构建体:有限元研究

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摘要

Abstract Background The development of adjacent segment degeneration (ASD) following ACDF is well established. There is no analytical study related to effects of plate profile on the biomechanics of the adjacent-level after ACDF. This study aimed to test the effects of plate profile on the adjacent-level biomechanics after single-level anterior cervical discectomy and fusion (ACDF). Methods A three-dimensional finite element model (FEM) of an intact C2–T1 segment was built and validated. From this intact model, two instrumentation models were constructed with the anchored zero-profile spacer or the standard plate-interbody spacer after a C5-C6 corpectomy and fusion. Motion patterns, the stresses in the disc, the endplate, and the facet joint at the levels cephalad and caudal to the fusion were assessed. Results Compared with the normal condition, the biomechanical responses in the adjacent levels were increased after fusion. Relative to the intact model, the average increase of range of motion (ROM) and stresses in the endplate, the disc, and the facet of the zero-profile spacer fusion model were slightly lower than that of the standard plate-interbody spacer fusion model. The kinematics ROM and stress variations above fusion segment were larger than that below. The biomechanical features of the adjacent segment after fusion were most affected during extension. Conclusions The FE analysis indicated that plate profile may have an impact on the biomechanics of the adjacent-level after a single-level ACDF. The impact may be long-term and cumulative. The current findings may help explain the decreasing incidence of ASD complications in the patients using zero-profile spacer compared with the patients using cage and plate construct.
机译:摘要背景,ACDF后相邻段变性(ASD)的发展是很好的。没有与平板轮廓对ACDF后相邻水平生物力学的影响有关的分析研究。本研究旨在在单级前宫颈椎间盘切除术和融合(ACDF)后测试平板轮廓对相邻水平生物力学的影响。方法建立和验证完整C2-T1段的三维有限元模型(FEM)。从这种完整的模型,在C5-C6术术和融合后,用锚定的零型材间隔物或标准板互通的隔板构成了两种仪表模型。运动模式,光盘中的应力,端板,底部位于Cephalad和剖面到融合的小关节。结果与正常情况相比,融合后相邻水平的生物力学反应增加。相对于完整的模型,零型材间隔融合模型的端板,盘和截面的运动范围(ROM)和应力的平均增加略低于标准板间间隔融合模型。融合段上方的运动学ROM和压力变化大于以下。融合后相邻区段的生物力学特征在延伸期间受到影响最大的影响。结论Fe分析表明,在单层ACDF后,平板轮廓可能对相邻水平的生物力学产生影响。影响可能是长期和累积的。与使用笼和板构建患者相比,目前的发现可以帮助解释使用零型材间隔患者的患者ASD并发症的发病率降低。

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