[Efficacy analysis of 3D printing prefixed nail path model assisted lumbar and sacral hemivertebra orthopaedic surgery].

Q4 Medicine
Xiao-Nan Wu, Wei-Ran Hu, Hao-Hao Ma, Yan-Zheng Gao, Xin-Ge Shi, Hong-Qiang Wang, Wen-Sheng Liao
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引用次数: 0

Abstract

Objective: To analyze the safety and effectiveness of 3D printing prefabricated nail path model assisted lumbosacral hemivertebra orthopaedic surgery.

Methods: A retrospective analysis was performed on 8 patients with lumbosacral hemivertebra deformity admitted from January 2016 to July 2021, including 3 males and 5 females, aged 6 to 15 at the time of surgery. The hemivertebra of 4 cases located on the left side and 4 cases on the right side. The hemivertebra of 1 case located at L2,3, 2 cases at L3,4, 2 cases at L4,5, and 3 cases at L5S1. Four cases were fully segmented hemivertebra and 4 cases were incomplete segmented hemivertebra. The patient CT data was imported into Mimics 21.0 software for modeling, and then the model data was imported into 3-Matic software. The vertebra requiring screw placement was selected to simulate the optimal screw placement angle and length, and the model was printed for preoperative planning and intraoperative guidance. All patients underwent orthopedic surgery with the aid of 3D printing preset nail path model. The safety and effectiveness of the 3D printing prefabricated nail tunnel model assisted lumbosacral hemivertebra orthopaedic surgery was evaluated by comparing the imaging parameters of the patients. The main outcome measures were the Cobb angle of the main curve, the Cobb angle of the proximal compensatory curve, the coronal balance index C7 plumb line-center sacral vertical line(C7PL-CSVL), the accuracy of nail placement, and the correction rate of scoliosis before surgery, 1 week and 1 year after surgery.

Results: All of 8 patients were followed up for 13 to 31 months. A total of 98 pedicle screws were placed in 8 patients. The number of pedicle screw grades A, B, C, D, E was 38, 46, 10, 4, 0 screws. The screws of grade A and B were defined as good position, the accuracy rate of screw placement was 85.7%. The Cobb angle of the main curve were 21° to 38° before operation, 5° to 11° at 1 week after operation, 7°to 12° at 1 year after operation. The Cobb angle of the proximal compensatory curve were 16° to 39° befoer operation, 7° to 12 °at 1 week after operation, 7° to 14° at 1 year after operation, the correction effect remained good with no correction loss. The coronal balance index C7PL-CSVL were 20 to 35 mm before operation, 11 to 18 mm at 1 week after operation, 10 to 16 mm at 1 year after operation, the coronal imbalance improved. The scoliosis correction rate was 65.6% to 84.2% 1 week after surgery, and 61.9% to 81.6% 1 year after surgery.

Conclusion: The use of 3D printing prefixed nail tunnel model in lumbosacral hemivertebra osteotomy is safe and effective, and can significantly improve patients' local deformities. It is a reliable method to assist lumbar sacral hemivertebra osteotomy.

[三维打印预置钉路径模型辅助腰椎和骶骨半椎体矫形手术的疗效分析]。
目的分析3D打印预制钉路模型辅助腰骶半椎体矫形手术的安全性和有效性:对2016年1月至2021年7月收治的8例腰骶半椎体畸形患者进行回顾性分析,其中男3例,女5例,手术时年龄6~15岁。4例的半椎体位于左侧,4例位于右侧。1例患者的半椎体位于L2,3,2例患者的半椎体位于L3,4,2例患者的半椎体位于L4,5,3例患者的半椎体位于L5S1。4 例为完全分割的半椎体,4 例为不完全分割的半椎体。患者的 CT 数据被导入 Mimics 21.0 软件进行建模,然后将模型数据导入 3-Matic 软件。选择需要置入螺钉的椎体,模拟最佳螺钉置入角度和长度,打印模型用于术前规划和术中指导。所有患者都在三维打印预设钉路模型的帮助下接受了矫形手术。通过比较患者的影像学参数,评估了3D打印预制钉道模型辅助腰骶半椎体矫形手术的安全性和有效性。主要结果指标包括主曲线的Cobb角、近端代偿曲线的Cobb角、冠状面平衡指数C7垂线-骶骨中心垂直线(C7PL-CSVL)、置钉准确度以及术前、术后1周和1年的脊柱侧弯矫正率:所有8名患者均接受了13至31个月的随访。8名患者共植入了98枚椎弓根螺钉。A、B、C、D、E级椎弓根螺钉的数量分别为38、46、10、4、0枚。A级和B级螺钉被定义为良好位置,螺钉置入的准确率为85.7%。主曲线的Cobb角在术前为21°至38°,术后1周为5°至11°,术后1年为7°至12°。近端代偿曲线的 Cobb 角在术前为 16°至 39°,术后 1 周为 7°至 12°,术后 1 年为 7°至 14°,矫正效果保持良好,无矫正损失。冠状面平衡指数C7PL-CSVL术前为20至35毫米,术后1周为11至18毫米,术后1年为10至16毫米,冠状面失衡情况有所改善。术后1周脊柱侧弯矫正率为65.6%至84.2%,术后1年矫正率为61.9%至81.6%:结论:在腰骶半椎体截骨术中使用3D打印预置钉隧道模型安全有效,能显著改善患者的局部畸形。它是辅助腰骶半椎体截骨术的可靠方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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