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枢椎椎板螺钉技术的解剖学研究与导板的研制。

Anatomical study of the technique of the axis laminar screws and development of guide.

机构信息

Department of Spine Surgery, The Affiliated Hospital of Xuzhou Medical University, Xuzhou, 221006, Jiangsu, People's Republic of China.

出版信息

J Orthop Surg Res. 2023 May 5;18(1):332. doi: 10.1186/s13018-023-03784-8.

Abstract

PURPOSE

To develop a bidirectional slide guide to assist screw placement in the axial lamina and to preliminarily discuss the accuracy and feasibility of auxiliary screw placement.

METHODS

CT data from 40 randomly selected patients were imported into the software for modelling, and cross-pinning was used to simulate pinning. According to the different crossing methods of the upper and lower laminar screws, they are divided into two groups. In the software, the position of the needlepoint of each screw is accurately measured, and the needle point is kept unchanged to simulate the movable range of the screw tail under the condition that the body does not penetrate the cortical bone. The data were compared by grouping and gender. Finally, the guide was designed by combining the screw exit point and fine adjustment angle data of all patients with the centripetal principle of the slide rail.

RESULTS

The needle exit data L1/L2/L3/L4 were 6.44 ± 0.52 mm, 7.05 ± 0.48 mm, 3.55 ± 0.75 mm and 5.09 ± 0.74 mm, respectively, and the fine adjustment angle of the slide rail was 10.51° ± 0.87°. There was no significant difference between the two groups or between men and women (p > 0.05).

CONCLUSION

In this experiment, using the data obtained from the simulation of screw insertion, a two-way slide guide was designed to assist the insertion of axial laminar screws. The guide locks the screw outlet point to position and guides the screw inlet point, which improves the accuracy and safety of screw placement.

摘要

目的

研制一种双向滑导以辅助螺钉在轴状椎板内的置钉,并初步探讨辅助置钉的准确性和可行性。

方法

从 40 名随机选择的患者中导入 CT 数据进行建模,并采用十字交叉法模拟进钉。根据上下椎板螺钉交叉方式的不同,将其分为两组。在软件中精确测量每枚螺钉针尖的位置,在不穿透皮质骨的情况下,保持针尖位置不变模拟螺钉尾部的活动范围。通过分组和性别对数据进行比较。最后,结合所有患者的螺钉出钉点和微调角度数据以及滑导的向心原理进行导板设计。

结果

L1/L2/L3/L4 出钉点数据分别为 6.44±0.52mm、7.05±0.48mm、3.55±0.75mm、5.09±0.74mm,滑导微调角度为 10.51°±0.87°。两组间、性别间差异均无统计学意义(P>0.05)。

结论

本实验利用模拟螺钉置入获得的数据,设计了一种双向滑导以辅助轴向椎板螺钉的置入,导板锁定螺钉出钉点以定位,并引导螺钉进钉点,提高了螺钉置入的准确性和安全性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a190/10161660/92f2e363b1c3/13018_2023_3784_Fig1_HTML.jpg

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