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三维打印导航模板个体化设计在椎弓根螺钉置钉中的应用:培训病例报告。

Individualized Design Application of 3-Dimensional Printing Navigational Template for Pedicle Screw Installation: A Training Case Report.

机构信息

Department of Spinal Surgery, Affiliated Jiangmen Hospital of Traditional Chinese Medicine of Jinan University, Jiangmen, Guangdong, China.

Department of Orthopedics, Puning Peoples' Hospital, Puning, Guangdong, China.

出版信息

Med Sci Monit. 2024 Aug 12;30:e941715. doi: 10.12659/MSM.941715.

Abstract

BACKGROUND The proper installation for pedicle screws by the traditional method of surgeons dependent on experience is not guaranteed, and educational solutions have progressed from chalkboards to electronic teaching platforms. We designed a case of 3-dimensional printing drill guide template as a surgical application, which can accurately navigate implantation of pedicle screws, and assessed its effect for simulative training. MATERIAL AND METHODS We randomly selected a set of computed tomography data for spondylolisthesis. A navigational template of pedicles and screws was designed by software Mimics and Pro-E, where trajectories of directions and angles guiding the nail way were manipulated for screwing based on anatomy, and its solid model was fabricated by a BT600 3D printer. The screws were integrated and installed to observe their stability. RESULTS The navigational model and custom spine implants were examined to be compatibly immobilized, because they are tolerant to radiation and stable against hydrolysis. The screw size and template were fit accurately to the vertebrae intraosseously, because the pilot holes were drilled and the trajectories were guided by cannulas with visible routes. During the surgical workflow, the patient reported appreciation and showed substantial compliance, while having few complications with this approach. Compared with fluoroscopy-assisted or free-hand techniques, the effect of simulative training during processing was excellent. CONCLUSIONS The surgical biomodel is practical for the procedural accuracy of surgical guides or as an educational drill. This fostering a style of "practice substituting for teaching" sets a paragon of keeping up with time and is worthy of recommendation.

摘要

背景

传统的外科医生依靠经验安装椎弓根螺钉的方法并不能保证安装的准确性,教育解决方案已经从黑板发展到了电子教学平台。我们设计了一种 3D 打印的钻头引导模板作为手术应用,可以准确引导椎弓根螺钉的植入,并评估其在模拟训练中的效果。

材料与方法

我们随机选择了一组脊柱滑脱的 CT 数据。通过 Mimics 和 Pro-E 软件设计了一个椎弓根和螺钉的导航模板,根据解剖结构操纵钉道的方向和角度轨迹进行螺钉固定,并通过 BT600 3D 打印机制造出其实体模型。然后将螺钉进行整合和安装,观察其稳定性。

结果

导航模型和定制脊柱植入物被检查为可兼容的固定,因为它们可以耐受辐射,并且对水解稳定。螺钉的尺寸和模板与椎体内的骨骼精确匹配,因为导针孔是用可见路径引导的套管钻的,轨迹是可见的。在手术过程中,患者对此方法表示赞赏,并表现出了很大的配合度,同时很少出现并发症。与透视辅助或徒手技术相比,在处理过程中模拟训练的效果非常出色。

结论

该手术生物模型对于手术导板的程序准确性或作为教育钻头是实用的。这种“实践代替教学”的方法是与时俱进的典范,值得推荐。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8334/11346326/7b0e3ac14c7d/medscimonit-30-e941715-g001.jpg

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