...
首页> 外文期刊>Spine >Motion changes in adjacent segments due to moderate and severe degeneration in C5-C6 disc: a poroelastic C3-T1 finite element model study.
【24h】

Motion changes in adjacent segments due to moderate and severe degeneration in C5-C6 disc: a poroelastic C3-T1 finite element model study.

机译:C5-C6椎间盘中度和严重变性导致相邻节段的运动变化:多孔弹性C3-T1有限元模型研究。

获取原文
获取原文并翻译 | 示例
           

摘要

STUDY DESIGN: Biomechanics of normal vertebral segments adjacent to a degenerated segment in the cervical spine. OBJECTIVE: To test the hypothesis of higher motion changes in the segment immediately inferior to a degenerated segment. SUMMARY OF BACKGROUND DATA: Past research has shown how disc degeneration (DD) affects adjacent segments; however, these studies are conducted only on the lumbar spine or the experimental protocols used are characterized by the presence of degeneration in adjacent segments. The question arises as to how much of the degenerative effect in a particular segment is internal to degeneration at that segment and how much is caused by degeneration at adjacent segments. It would be clinically relevant to analyze biomechanical changes in adjacent segments in the cervical spine by considering DD at only one segment, where adjacent segments remain normal. METHODS: A poroelastic, 3-dimensional finite element model of a normal C3-T1 segment was validated and then used for the degenerative study. Two additional C3-T1 models were developed with moderate and severe degenerative C5-C6 disc grades. Disc geometry and tissue material properties were modified to simulate C5-C6 DD. Intersegmental rotational motions (C4-C5, C5-C6, and C6-C7) for the 3 C3-T1 models were computed under moment loads. RESULTS: With progressive C5-C6 DD, motion decreased at that segment. At adjacent segments, higher motion changes were observed mainly in flexion/extension. Inferior C6-C7 motion changes were higher than superior C4-C5 motion changes. The inferior C6-C7 motion was affected even when C5-C6 DD was moderate, and it was further affected by severe C5-C6 DD. The superior C4-C7 motion, however, was mostly affected by severe C5-C6 DD. CONCLUSION: The hypothesis of higher motion changes in the normal C6-C7 segment immediately inferior to a degenerated C5-C6 segment was found to be true. Future experiments on multisegmental cervical spines are recommended to verify the current data.
机译:研究设计:正常脊椎节段与颈椎退化节段相邻的生物力学。目的:为了检验在退化片段以下的片段中较高运动变化的假设。背景数据摘要:过去的研究表明,椎间盘退变(DD)如何影响相邻的节段。然而,这些研究仅在腰椎上进行,或者所使用的实验方案的特征在于相邻节段中存在变性。出现的问题是,特定段的退化作用在该段的内部是多少,而相邻段的退化是由多少引起的。通过仅在一个节段上考虑DD,而在相邻节段保持正常的情况下分析DD,分析颈椎相邻节段的生物力学变化在临床上将具有重要意义。方法:验证了正常C3-T1区段的多孔弹性3维有限元模型,然后将其用于退化研究。还开发了另外两个具有中度和严重退化性C5-C6光盘等级的C3-T1模型。修改了椎间盘的几何形状和组织材料属性,以模拟C5-C6 DD。在力矩载荷下计算了3个C3-T1模型的节间旋转运动(C4-C5,C5-C6和C6-C7)。结果:进行性C5-C6 DD时,该段运动减少。在相邻节段,主要在屈曲/伸展中观察到较高的运动变化。下C6-C7运动变化高于上C4-C5运动变化。即使C5-C6 DD处于中等水平,C6-C7的下运动也会受到影响,而严重的C5-C6 DD会进一步影响其运动。然而,出色的C4-C7运动主要受严重的C5-C6 DD影响。结论:在正常的C6-C7节段中,刚好低于退化的C5-C6节段中较高运动变化的假设是正确的。建议将来在多节段颈椎上进行实验以验证当前数据。

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