首页> 外文期刊>Clinical biomechanics >Adjacent level effects of bi level disc replacement, bi level fusion and disc replacement plus fusion in cervical spine- a finite element based study
【24h】

Adjacent level effects of bi level disc replacement, bi level fusion and disc replacement plus fusion in cervical spine- a finite element based study

机译:双水平椎间盘置换,双水平融合和椎间盘置换加融合对颈椎的邻近效应-基于有限元的研究

获取原文
获取原文并翻译 | 示例
       

摘要

Background: Studies delineating the adjacent level effect of single level disc replacement systems have been reported in literature. The aim of this study was to compare the adjacent level biomechanics of bi-level disc replacement, bi-level fusion and a construct having adjoining level disc replacement and fusion system. Methods: In total, biomechanics of four models- intact, bi level disc replacement, bi level fusion and fusion plus disc replacement at adjoining levels- was studied to gain insight into the effects of various instrumentation systems on cranial and caudal adjacent levels using finite element analysis (73.6 N + varying moment). Findings: The bi-level fusion models are more than twice as stiff as compared to the intact model during flexion-extension, lateral bending and axial rotation. Bi-level disc replacement model required moments lower than intact model (1.5 Nm). Fusion plus disc replacement model required moment 10-25% more than intact model, except in extension. Adjacent level motions, facet loads and endplate stresses increased substantially in the bi-level fusion model. On the other hand, adjacent level motions, facet loads and endplate stresses were similar to intact for the bi-level disc replacement model. For the fusion plus disc replacement model, adjacent level motions, facet loads and endplate stresses were closer to intact model rather than the bi-level fusion model, except in extension. Interpretation: Based on our finite element analysis, fusion plus disc replacement procedure has less severe biomechanical effects on adjacent levels when compared to bi-level fusion procedure. Bi-level disc replacement procedure did not have any adverse mechanical effects on adjacent levels.
机译:背景技术:已有文献报道了描述单级光盘更换系统的相邻级效应的研究。这项研究的目的是比较双层椎间盘置换,双层融合和具有相邻椎间盘置换和融合系统的构建体的相邻层生物力学。方法:总共研究了四种模型的生物力学-完整,双水平椎间盘置换,双水平融合和融合加相邻层椎间盘置换-以了解使用有限元分析各种仪器系统对颅骨和尾椎邻近水平的影响分析(73.6 N +变矩)。结果:在弯曲伸展,横向弯曲和轴向旋转过程中,双层融合模型的刚度是完整模型的两倍以上。双层椎间盘置换模型所需的力矩小于完整模型的力矩(1.5 Nm)。除了加长版外,Fusion plus光盘更换模型所需的力矩比完整模型多10-25%。在双层融合模型中,相邻层的运动,刻面载荷和端板应力显着增加。另一方面,相邻水平运动,小平面载荷和端板应力与双水平椎间盘置换模型的完整性相似。对于融合加椎间盘置换模型,除了扩展以外,相邻层的运动,刻面载荷和端板应力更接近完整模型,而不是双层融合模型。解释:根据我们的有限元分析,与双级融合手术相比,融合加椎间盘置换术对相邻级的生物力学影响较小。双水平椎间盘置换手术对相邻水平没有任何不利的机械影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号