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一种采用新型鞍形关节的颈椎间盘置换物的小关节负荷情况

The facet joint loading profile of a cervical intervertebral disc replacement incorporating a novel saddle-shaped articulation.

作者信息

Stieber Jonathan R, Quirno Martin, Kang Mathew, Valdevit Anthony, Errico Thomas J

机构信息

Department of Orthopaedics, St Luke's Roosevelt Hospital, New York, NY, USA.

出版信息

J Spinal Disord Tech. 2011 Oct;24(7):432-6. doi: 10.1097/BSD.0b013e3182027297.

Abstract

STUDY DESIGN

Biomechanical study.

OBJECTIVE

To evaluate the cervical facet loading profile of an intervertebral cervical disc prosthesis incorporating a unique saddle-shaped articulation and to determine the effect of implantation of the prosthesis on both the loading curve and area distribution of facet loading, when compared with that of an intact specimen.

SUMMARY OF BACKGROUND DATA

This is the first study that examines the effect of implantation of a cervical disc replacement on the loading of the facet joints.

METHODS

Fresh-frozen ovine cervical spine specimens were used. Specimens were prepared and disarticulated to yield 6 functional spinal units, which were secured and mounted in a custom fixture on a material testing apparatus. A novel pressure sensor was constructed by combining a resistive ink thin film sensor with Fuji pressure-sensitive film. The sensor was calibrated before unilateral insertion into the cervical facet joint via a small arthrotomy. Specimens were tested in both intact condition and after surgical intervention consisting of discectomy and implantation of an intervertebral cervical disc prosthesis (CerviCore, Stryker Spine, Allendale, NJ). Specimens were tested in flexion, extension, and lateral bending to 3 Nm and in torsion to 2.5 Nm. At the termination of each loading profile, the load was maintained for 30 seconds to permit full exposure of the Fuji film. For each configuration, the maximum resultant load, load rate, and contact area pressure at the endpoint of the loading profile were determined. A paired Student t test was used to determine the differences between the intact specimen and the specimen with an implanted intervertebral disc prosthesis.

RESULTS

There were no statistically significant differences in mean or maximum pressures between the intact specimen and the specimen with an intervertebral disc in all loading configurations. Similarly, there was no significant difference in the total measured force between the groups in all loading configurations. There was no significant difference in contact areas between the groups in flexion, lateral bending, and torsion. When evaluated in extension, the intact specimen had a mean contact area of 0.8 cm compared with 0.5 cm for the intervertebral disc (P<0.02).

CONCLUSIONS

Biomechanical testing in an ovine model demonstrated no significant difference in measured facet pressures and forces between an intact native cervical disc specimen and a cervical intervertebral disc prosthesis using a saddle-shaped articulation. Peak and mean pressures were not demonstrated to be significantly different between the implanted and intact disc conditions. Implantation of the prosthesis resulted in a significant reduction of contact area under extension moments.

摘要

研究设计

生物力学研究。

目的

评估一种采用独特鞍形关节的颈椎间盘假体的颈椎小关节负荷情况,并确定与完整标本相比,假体植入对小关节负荷曲线和负荷面积分布的影响。

背景资料总结

这是第一项研究颈椎间盘置换植入对小关节负荷影响的研究。

方法

使用新鲜冷冻的绵羊颈椎标本。制备并分离标本以获得6个功能脊柱单元,将其固定并安装在材料测试仪器上的定制夹具中。通过将电阻油墨薄膜传感器与富士压敏膜相结合构建了一种新型压力传感器。在通过小切口单侧插入颈椎小关节之前对传感器进行校准。在完整状态下以及在包括椎间盘切除术和植入颈椎间盘假体(CerviCore,史赛克脊柱公司,新泽西州艾伦代尔)的手术干预后对标本进行测试。对标本进行前屈、后伸和向3 Nm侧方弯曲以及向2.5 Nm扭转的测试。在每个负荷曲线结束时,保持负荷30秒以使富士膜完全曝光。对于每种配置,确定负荷曲线终点处的最大合力、负荷率和接触面积压力。使用配对学生t检验确定完整标本与植入颈椎间盘假体的标本之间的差异。

结果

在所有负荷配置下,完整标本与植入椎间盘的标本之间的平均压力或最大压力均无统计学显著差异。同样,在所有负荷配置下,两组之间的总测量力也无显著差异。在屈曲、侧方弯曲和扭转时,两组之间的接触面积无显著差异。在伸展时进行评估时,完整标本的平均接触面积为0.8平方厘米,而椎间盘为0.5平方厘米(P<0.02)。

结论

在绵羊模型中的生物力学测试表明,使用鞍形关节的完整天然颈椎间盘标本与颈椎间盘假体之间在测量的小关节压力和力方面无显著差异。植入和完整椎间盘状态下的峰值和平均压力未显示出显著差异。假体植入导致伸展力矩下的接触面积显著减小。

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