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In vitro analysis of thoracic spinal motion segment flexibility during stepwise reduction of all functional structures

机译:在逐步减少所有功能结构期间的胸椎运动段灵活性的体外分析

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PurposeThe aim of this study was to quantify the stabilizing effect of the passive structures in thoracic spinal motion segments by stepwise resections. These data can be used to calibrate finite element models of the thoracic spine, which are needed to explore novel surgical treatments of spinal deformities, fractures, and tumours.MethodSix human thoracic spinal motion segments from three segmental levels (T2-T3, T6-T7, and T10-T11) were loaded with pure moments of 1 and 2.5 Nm in flexion/extension, lateral bending, and axial rotation. After each loading step, the ligaments, facet capsules, and the nucleus pulposus were stepwise resected from posterior to anterior direction, while the segmental relative motions were measured using an optical motion tracking system.ResultsSignificant increases (p<0.05) in the range of motion were detected after resecting the anterior spinal structures depending on loading magnitude, motion direction, and segmental level. The highest relative increases in the range of motion were observed after nucleotomy in all motion directions. The vertebral arch mostly stabilized the thoracic spinal motion segments in flexion and extension, while the facet joint capsules mainly affected the segmental stability in axial rotation. Coupled motions were not observed.ConclusionsThe anulus fibrosus defines the motion characteristics qualitatively, while the ligaments and the presence of the nucleus pulposus restrict the mobility of a thoracic spinal motion segment solely in a quantitative manner. The posterior ligaments do not predominantly serve for primary stability but for the prevention of hyperflexion.
机译:本研究的目的是通过逐步切除量化胸椎运动段中的被动结构的稳定效果。这些数据可用于校准胸椎的有限元模型,这是探索脊柱畸形,骨折和肿瘤的新颖手术治疗。方法从三个节段水平(T2-T3,T6-T7在屈曲/延伸,横向弯曲和轴向旋转中装载纯度为1和2.5nm的纯度。在每次加载步骤后,韧带,刻面胶囊和核浆瓣从后侧向后转向,同时使用光学运动跟踪系统测量节段相对运动。结果中显着增加(P <0.05)在运动范围内在取决于负载幅度,运动方向和节段水平之后检测到前脊柱结构后检测到。在所有运动方向上核桃术后,观察到运动范围的相对增加。椎弓弓大部分稳定在屈曲和延伸中的胸脊柱运动段,而方面关节胶囊主要影响轴向旋转中的节段稳定性。未观察到偶联的运动。结论血管纤维状定义定义运动特性,而韧带和核浆气的存在仅仅以定量方式限制了胸脊柱运动段的迁移率。后韧带不适合初级稳定性,而是用于预防超紧身。

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