首页> 外文期刊>Journal of Mechanical Science and Technology >Changes in range of motion, intradiscal pressure, and facet joint force after intervertebral disc and facet joint degeneration in the cervical spine
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Changes in range of motion, intradiscal pressure, and facet joint force after intervertebral disc and facet joint degeneration in the cervical spine

机译:椎间盘突出症和颈椎小关节退变后运动范围,椎间盘内压力和小关节力的变化

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摘要

Degeneration of the intervertebral discs and facet joints is considered a source of pain in the cervical spine. In this study, we developed finite element models of cervical spines that were healthy or had various extents of degeneration and investigated changes in biomechanical behaviors of the cervical spine, such as range of motion (ROM), intradiscal pressure, and facet joint forces. Degenerative changes associated with mild, moderate, and severe degeneration of the disc and facet joint were described at the C5-C6 motion segment unit (MSU). With progression of degeneration, intersegmental ROM decreased at the degenerated MSU but increased at the healthy MSUs, intradiscal pressure decreased at the degenerated MSU but only slightly changed at the healthy MSUs, and facet joint forces at both degenerated and healthy MSUs increased. These findings could be used to understand the mechanisms underlying injury of the cervical spine caused by disc and facet joint degeneration.
机译:椎间盘和小关节的退化被认为是颈椎疼痛的根源。在这项研究中,我们建立了健康的或具有不同程度的变性的颈椎有限元模型,并研究了颈椎生物力学行为的变化,例如运动范围(ROM),椎间盘内压力和小关节力。在C5-C6运动节段单元(MSU)中描述了与椎间盘和小关节的轻度,中度和严重变性相关的变性变化。随着变性的发展,节段间ROM在退化的MSU处降低,但在健康的MSU处升高,椎间盘内压在退化的MSU处降低,但在健康的MSU处仅轻微改变,并且退化的和健康的MSU上的小关节力增加。这些发现可用于了解由椎间盘和小关节退化引起的颈椎损伤的潜在机制。

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