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人工寰枢关节置换术后寰枢关节的生物力学研究

Biomechanical study of the atlantoaxial joint after artificial atlanto-odontoid joint arthroplasty.

作者信息

Hu Yong, Gu Yong-jie, Yuan Zhen-shan, He Xian-feng, Dong Wei-xin, Zhao Wei-dong

机构信息

Department of Spinal Surgery, Ningbo Sixth Hospital, Ningbo 315040, Zhejiang Province, China.

出版信息

Chin J Traumatol. 2012;15(6):329-33.

Abstract

OBJECTIVE

To investigate the stability and three-dimensional movements of the atlantoaxial joint after artificial atlanto-odontoid joint (AAOJ) arthroplasty by comparing with a conventional method.

METHODS

After anterior decompression, 24 human cadaveric spinal specimens of C0-C3 were randomly divided into two groups: Group A receiving artificial AAOJ arthroplasty; Group B experiencing anterior transarticular screw (ATAS) fixation. Two groups underwent flexibility test in intact and instrumented states. Rotational angle of the C0-C3 segments was measured to study the immediate stability and function of anterior decompression with AAOJ arthroplasty compared with the intact state and ATAS fixation.

RESULTS

Compared with the intact state, anterior decompression with AAOJ arthroplasty resulted in a significant decrease in the range of motion (ROM) and neutral zone (NZ) during flexion, extension and lateral bending (P less than 0.05); however, with regard to axial rotation, there was no significant difference in ROM and NZ (P larger than 0.05). Compared with anterior decompression with ATAS fixation, anterior decompression with AAOJ arthroplasty during flexion, extension and lateral bending, significant difference was found in ROM and NZ (P larger than 0.05); however, as for axial rotation, there was a significant increase in ROM and NZ (P less than 0.05).

CONCLUSION

The self-designed AAOJ has an excellent biomechanical performance, which can restore excellent instant stability and preserve the movement of the atlantoaxial joint.

摘要

目的

通过与传统方法比较,研究人工寰齿关节(AAOJ)置换术后寰枢关节的稳定性及三维运动。

方法

对24例C0-C3人类尸体脊柱标本进行前路减压后,随机分为两组:A组接受人工AAOJ置换术;B组采用经关节螺钉(ATAS)固定。两组在完整状态和植入器械状态下进行柔韧性测试。测量C0-C3节段的旋转角度,以研究与完整状态和ATAS固定相比,AAOJ置换术前路减压后的即时稳定性和功能。

结果

与完整状态相比,AAOJ置换术前路减压后,在屈伸和侧屈时的活动范围(ROM)和中立区(NZ)显著减小(P<0.05);然而,在轴向旋转方面,ROM和NZ无显著差异(P>0.05)。与ATAS固定前路减压相比,AAOJ置换术前路减压在屈伸和侧屈时,ROM和NZ有显著差异(P>0.05);然而,在轴向旋转方面,ROM和NZ显著增加(P<0.05)。

结论

自行设计的AAOJ具有优异的生物力学性能,可恢复良好的即时稳定性并保留寰枢关节的运动。

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