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[一种用于寰枢椎椎弓根螺钉置入的新型计算机辅助钻孔模板:一项尸体实验研究]

[A novel computer-assisted drill template for atlantoaxial pedicle screw placement:a cadaveric experimental study].

作者信息

Hu Yong, Yuan Zhen-shan, Xie Hui, Yuan Jian-bing, Dong Wei-xin, Wang Cheng-tao

机构信息

Ningbo No.6 Hospital, Ningbo 315040, China. Email:

Ningbo No.6 Hospital, Ningbo 315040, China.

出版信息

Zhonghua Yi Xue Za Zhi. 2013 Sep 3;93(33):2659-63.

Abstract

OBJECTIVE

To validate the accuracy of atlanto-axial pedicle screw placement with a rapid prototyping drill guide template and analyze the factors of screw deviations.

METHODS

Computed tomography (CT) scan was performed in 16 cervical specimens. And three-dimension cervical vertebrae was reconstructed by Mimics software. The ideal trajectory for atlanto-axial pedicle screws was designed with a complementary basal template for posterior surface of atlanto-axial corresponding anatomical structure. Then drill guide template was materialized in a rapid prototyping machine. These templates were used during operation. The entry point and ideal and actual trajectories were measured after matching the positions of preoperative and postoperative specimens at designated coordinate axis.

RESULTS

The average displacement of entry point of left and right C1 pedicle screw in x, y, z axis was (0.14 ± 0.59),(0.31 ± 1.32), (0.27 ± 0.68), (0.23 ± 0.55), (0.43 ± 1.21) and (0.30 ± 0.72) mm. And the average displacement of entry point of left and right C2 pedicle screw in m, n, p axis was (0.25 ± 0.85), (0.52 ± 1.52), (-0.27 ± 0.67), (0.44 ± 0.87), (0.38 ± 1.48), (-0.14 ± 0.62) mm.No statistically significant difference existed (P > 0.05) in deviation of entry point and between ideal and actual trajectories.

CONCLUSION

Both human handling and inherent hardware and software factors are main reasons for a deviation of C1-C2 pedicle screw placement assisted by a rapid prototyping drill guide template.Ease of operation and individualized design are the advantages of drill guide template so as to greatly improve the precision of screw placement and reduce screw deviation.

摘要

目的

验证使用快速成型钻孔导向模板进行寰枢椎椎弓根螺钉置入的准确性,并分析螺钉偏差的因素。

方法

对16个颈椎标本进行计算机断层扫描(CT)。通过Mimics软件重建三维颈椎。根据寰枢椎后表面相应解剖结构的互补基底模板设计寰枢椎椎弓根螺钉的理想轨迹。然后在快速成型机中制作钻孔导向模板。在手术中使用这些模板。在指定坐标轴上匹配术前和术后标本的位置后,测量进针点以及理想和实际轨迹。

结果

左右C1椎弓根螺钉进针点在x、y、z轴上的平均位移分别为(0.14±0.59)、(0.31±1.32)、(0.27±0.68)、(0.23±0.55)、(0.43±1.21)和(0.30±0.72)mm。左右C2椎弓根螺钉进针点在m、n、p轴上的平均位移分别为(0.25±0.85)、(0.52±1.52)、(-0.27±0.67)、(0.44±0.87)、(0.38±1.48)和(-0.14±0.62)mm。进针点偏差以及理想轨迹与实际轨迹之间差异无统计学意义(P>0.05)。

结论

在快速成型钻孔导向模板辅助下,C1-C2椎弓根螺钉置入偏差的主要原因包括人为操作以及固有的硬件和软件因素。钻孔导向模板具有操作简便和个性化设计的优点,从而可大大提高螺钉置入的精度并减少螺钉偏差。

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