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中度退变的腰椎运动节段:它们真的不稳定吗?

Moderately degenerated lumbar motion segments: Are they truly unstable?

作者信息

van Rijsbergen M M, Barthelemy V M P, Vrancken A C T, Crijns S P M, Wilke H-J, Wilson W, van Rietbergen B, Ito K

机构信息

Orthopaedic Biomechanics, Department of Biomedical Engineering, Eindhoven University of Technology, P.O. Box 513, 5600 MB, Eindhoven, The Netherlands.

Imaging Division, Department of Radiotherapy, University Medical Center Utrecht, Utrecht, The Netherlands.

出版信息

Biomech Model Mechanobiol. 2017 Apr;16(2):537-547. doi: 10.1007/s10237-016-0835-9. Epub 2016 Sep 23.

Abstract

The two main load bearing tissues of the intervertebral disc are the nucleus pulposus and the annulus fibrosus. Both tissues are composed of the same basic components, but differ in their organization and relative amounts. With degeneration, the clear distinction between the two tissues disappears. The changes in biochemical content lead to changes in mechanical behaviour of the intervertebral disc. The aim of the current study was to investigate if well-documented moderate degeneration at the biochemical and fibre structure level leads to instability of the lumbar spine. By taking into account biochemical and ultrastructural changes to the extracellular matrix of degenerating discs, a set of constitutive material parameters were determined that described the individual tissue behaviour. These tissue biomechanical models were then used to simulate dynamic behaviour of the degenerated spinal motion segment, which showed instability in axial rotation, while a stabilizing effect in the other two principle bending directions. When a shear load was applied to the degenerated spinal motion segment, no sign of instability was found. This study found that reported changes to the nucleus pulposus and annulus fibrosus matrix during moderate degeneration lead to a more stable spinal motion segment and that such biomechanical considerations should be incorporated into the general pathophysiological understanding of disc degeneration and how its progress could affect low back pain and its treatments thereof.

摘要

椎间盘的两个主要承重组织是髓核和纤维环。这两种组织由相同的基本成分组成,但在组织结构和相对含量上有所不同。随着退变,这两种组织之间的明显区别消失。生化成分的变化导致椎间盘力学行为的改变。本研究的目的是调查在生化和纤维结构水平上有充分记录的中度退变是否会导致腰椎不稳定。通过考虑退变椎间盘细胞外基质的生化和超微结构变化,确定了一组描述个体组织行为的本构材料参数。然后使用这些组织生物力学模型来模拟退变脊柱运动节段的动态行为,结果显示在轴向旋转时不稳定,而在其他两个主要弯曲方向上有稳定作用。当对退变的脊柱运动节段施加剪切载荷时,未发现不稳定迹象。本研究发现,中度退变期间髓核和纤维环基质的报告变化会导致脊柱运动节段更稳定,并且这种生物力学考虑应纳入椎间盘退变的一般病理生理学理解以及其进展如何影响腰痛及其治疗之中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c945/5350258/33d91c2277bc/10237_2016_835_Fig1_HTML.jpg

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