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后部结构、肋椎关节和胸廓在胸椎稳定性中的生物力学作用。

Biomechanical role of the posterior elements, costovertebral joints, and rib cage in the stability of the thoracic spine.

作者信息

Oda I, Abumi K, Lü D, Shono Y, Kaneda K

机构信息

Department of Orthopaedic Surgery, Hokkaido University School of Medicine, Sapporo, Japan.

出版信息

Spine (Phila Pa 1976). 1996 Jun 15;21(12):1423-9. doi: 10.1097/00007632-199606150-00005.

Abstract

STUDY DESIGN

This is a biomechanical study of the thoracic spine. Various ligaments and joints were resected sequentially and nondestructive cyclic loading tests were performed. Effects of each resection were analyzed biomechanically.

OBJECTIVES

To investigate the role of the posterior elements, costovertebral joints, and rib cage in the stability of the thoracic spine.

SUMMARY OF BACKGROUND DATA

There have been no experimental studies concerning the mechanical interaction between the thoracic spine and rib cage.

METHODS

Eight canine rib cage-thoracic spine complexes, consisting of the sixth to eighth ribs, sternum, and T5-T9 vertebrae, were used. Six pure moments along three axes were applied to the specimens, and angular deformation of T6-T7 was recorded. After testing the intact specimen, resection of the stabilizers was conducted incrementally in the following manner: 1) removal of the posterior elements at T6-T7, 2) resection of the bilateral seventh costovertebral joints, and finally, 3) destruction of the rib cage. The same loading tests were repeated at each stage. The ranges of motion and neutral zones were calculated by digitization.

RESULTS

A large increase in the range of motion in flexion-extension was observed after resection of the posterior elements and in lateral bending and axial rotation after resection of the costovertebral joints. A significant increase in the neutral zone in lateral bending and axial rotation was observed after bilateral resection of the costovertebral joints and destruction of the rib cage.

CONCLUSIONS

The costovertebral joints and rib cage play an important role in providing stability to the thoracic spine. The state of the costovertebral joints and rib cage should be assessed to evaluate the stability of the thoracic spine.

摘要

研究设计

这是一项关于胸椎的生物力学研究。依次切除各种韧带和关节,并进行无损循环加载试验。对每次切除的效果进行生物力学分析。

目的

研究后部结构、肋椎关节和胸廓在胸椎稳定性中的作用。

背景数据总结

尚无关于胸椎与胸廓之间力学相互作用的实验研究。

方法

使用8个犬类胸廓-胸椎复合体,包括第六至第八肋骨、胸骨以及T5-T9椎体。对标本施加沿三个轴的六个纯力矩,并记录T6-T7的角变形。在测试完整标本后,按以下方式逐步切除稳定结构:1)切除T6-T7的后部结构;2)切除双侧第七肋椎关节;最后,3)破坏胸廓。在每个阶段重复相同的加载试验。通过数字化计算运动范围和中性区。

结果

切除后部结构后,屈伸运动范围大幅增加;切除肋椎关节后,侧弯和轴向旋转运动范围增加。双侧切除肋椎关节和破坏胸廓后,侧弯和轴向旋转的中性区显著增加。

结论

肋椎关节和胸廓在为胸椎提供稳定性方面发挥着重要作用。应评估肋椎关节和胸廓的状态以评估胸椎的稳定性。

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