图像引导下椎弓根螺钉置入。实验室设备

L.P. Nolte, L.J. Zamorano, Z. Jiang, Q. Wang, F. Langlotz, U. Berlemann
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引用次数: 63

摘要

研究设计在实验室装置中测试了一种计算机辅助系统,该系统允许精确的术前计划和手术器械的实时术中图像定位。目的本研究的目的是评估这种经椎弓根脊柱固定技术的适用性、功能性和准确性。大多数经椎弓根脊柱固定技术依赖于在解剖标志的帮助下识别预先确定的目标和术中使用图像增强器。各种研究报告了相当大的螺钉错位率,这可能导致严重的临床后遗症,如永久性神经损伤。方法体外在腰椎上钻20个椎弓根导孔进行实验。通过通过椎弓根的精确切割和模拟插入6毫米椎弓根螺钉来评估准确性。结果77例切口中有70例螺钉位置理想,无椎弓根皮质损伤。结论该技术为经椎弓根螺钉置入提供了安全、准确、灵活的基础。该方法在临床应用中有待进一步评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Image-guided insertion of transpedicular screws. A laboratory set-up

Study Design

A computer-assisted system allowing precise preoperative planning and real-time intraoperative image localization of surgical instruments is tested in a laboratory setup.

Objectives

The purpose of this study is to assess the applicability, functionality, and accuracy of this transpedicular spinal fixation technique.

Summary of Background Data

Most techniques in transpedicular spinal fixation rely on the identification of predefined targets with the help of anatomic landmarks and on the intraoperative use of image intensifiers. Various studies report considerable screw misplacement rates which may lead to serious clinical sequelae such as permanent nerve damage.

Methods

The proposed system was tested in an in vitro setup drilling 20 pedicle pilot holes in lumbar vertebrae. The accuracy was assessed using precision cuts through the pedicles and simulation of a 6-mm pedicle screw insertion.

Results

An ideal screw position was found in 70 of 77 cuts, and in no case was an injury to the pedicular cortex observed.

Conclusions

The presented technique provides a safe, accurate, and flexible basis for transpedicular screw placement in the spine. This approach should be further evaluated in clinical applications.

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