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Motion compensation associated with single-level cervical fusion: where does the lost motion go?

机译:与单级颈椎融合术相关的运动补偿:运动丢失了吗?

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STUDY DESIGN: Seven adult human cadaveric cervical spines (C2-T1) were biomechanically tested in a programmable testing device. OBJECTIVE: Compare the effects of incremental single-level fusion at different levels of the cervical spine. SUMMARY OF BACKGROUND DATA: Clinical studies have reported degenerative symptomatic disc disease at disc levels adjacent to fusion. No known study has attempted to delineate the effects of single-level fusion at different levels of the cervical spine. METHODS: The spines were tested in flexion, extension, right and left lateral bending, and right and left axial rotation for 7 different conditions: harvested and 6 independent single-level fused conditions (i.e., C2-C3, C3-C4, C4-C5, C5-C6, C6-C7, and C7-T1). Segmental motion and global stiffness data were normalized to the harvested condition and compared using a 1-way analysis of variance followed by a SNK test (P < 0.01). RESULTS: Motion compensation was distributed among the unfused segments with significant compensation at the segments adjacent to fusion. Significant increases occurred at the level above C3-C4 and C4-C5 fusions, and below for C5-C6 and C6-C7 fusions in both flexion and extension. CONCLUSIONS: Increase motion compensation occurred at segments immediately adjacent to a single-level fusion. Significant differences occurred at the level above the fusion site for the C3-C4 and C4-C5 fusion in both flexion and extension. When the lower levels (C5-C6, C6-C7) were fused, a significant amount of increased motion was observed at the levels immediately above and below the fusion. However, greater compensation occurred at the inferior segments than the superior segments for the lower level fusions (C5-C6, C6-C7).
机译:研究设计:在可编程的测试设备中对7个成年人类尸体颈椎(C2-T1)进行了生物力学测试。目的:比较颈椎不同水平单层增量融合的效果。背景技术摘要:临床研究已经报告了椎间盘融合附近的椎间盘退行性疾病。没有已知的研究试图描述单级融合在颈椎不同水平上的作用。方法:在7种不同条件下对脊柱进行屈曲,伸展,左右左右弯曲以及左右轴向旋转测试:收获状态和6种独立的单级融合状态(即C2-C3,C3-C4,C4- C5,C5-C6,C6-C7和C7-T1)。将节段运动和整体刚度数据归一化至收获条件,并使用方差单向分析和随后的SNK测试进行比较(P <0.01)。结果:运动补偿分布在未融合的部分之间,在融合附近的部分具有明显的补偿。在屈曲和伸展方面,高于C3-C4和C4-C5融合物的水平显着增加,低于C5-C6和C6-C7融合物的水平。结论:增加运动补偿发生在紧邻单级融合的路段。对于C3-C4和C4-C5融合,在屈曲和伸展方面在融合位点以上的水平发生了显着差异。当较低的水平(C5-C6,C6-C7)融合时,在融合之上和之下的水平上观察到大量的运动增加。但是,对于较低级别的融合(C5-C6,C6-C7),下段比上段发生更大的补偿。

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