Three-dimensional analysis of puncture needle path through safety triangle approach PLD and design of puncture positioning guide plate.

IF 1.7 3区 医学 Q3 INSTRUMENTS & INSTRUMENTATION Journal of X-Ray Science and Technology Pub Date : 2024-01-01 DOI:10.3233/XST-230267
Penghui Yu, Yanbing Li, Qidong Zhao, Xia Chen, Liqin Wu, Shuai Jiang, Libing Rao, Yihua Rao
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Abstract

Objective: In this study, the three-dimensional relationship between the optimal puncture needle path and the lumbar spinous process was discussed using digital technology. Additionally, the positioning guide plate was designed and 3D printed in order to simulate the surgical puncture of specimens. This plate served as an important reference for the preoperative simulation and clinical application of percutaneous laser decompression (PLD).

Method: The CT data were imported into the Mimics program, the 3D model was rebuilt, the ideal puncture line N and the associated central axis M were developed, and the required data were measured. All of these steps were completed. A total of five adult specimens were chosen for CT scanning; the data were imported into the Mimics program; positioning guide plates were generated and 3D printed; a simulated surgical puncture of the specimens was carried out; an X-ray inspection was carried out; and an analysis of the puncture accuracy was carried out.

Results: (1) The angle between line N and line M was 42°~55°, and the angles between the line M and 3D plane were 1°~2°, 5°~12°, and 78°~84°, respectively; (2) As the level of the lumbar intervertebral disc decreases, the distance from point to line and point to surface changes regularly; (3) The positioning guide was designed with the end of the lumbar spinous process and the posterior superior iliac spine on both sides as supporting points. (4) Five specimens were punctured 40 times by using the guide to simulate surgical puncture, and the success rate was 97.5%.

Conclusion: By analyzing the three-dimensional relationship between the optimal puncture needle path and the lumbar spinous process, the guide plate was designed to simulate surgical puncture, and the individualized safety positioning of percutaneous puncture was obtained.

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通过安全三角法 PLD 对穿刺针路径进行三维分析,并设计穿刺定位导板。
目的:本研究利用数字技术探讨了最佳穿刺针路径与腰椎棘突之间的三维关系。此外,还设计并三维打印了定位导板,以模拟手术穿刺标本。该定位导板为经皮激光减压术(PLD)的术前模拟和临床应用提供了重要参考:方法:将 CT 数据导入 Mimics 程序,重建三维模型,制定理想穿刺线 N 和相关中心轴 M,并测量所需数据。所有这些步骤均已完成。共选择了五个成人标本进行 CT 扫描;将数据导入 Mimics 程序;生成定位导板并进行三维打印;对标本进行模拟手术穿刺;进行 X 射线检查;并对穿刺精度进行分析。结果:(1)N线与M线的夹角为42o 55o,M线与三维平面的夹角分别为1o 2o、5o 12o和78o 84o;(2)随着腰椎间盘水平的降低,点到线、点到面的距离发生了规律性变化;(3)定位导板设计以两侧腰椎棘突末端和髂后上棘为支撑点。(4)使用该引导器模拟手术穿刺,对 5 个标本进行了 40 次穿刺,成功率为 97.5%:通过分析最佳穿刺针路径与腰椎棘突的三维关系,设计了模拟手术穿刺的导板,获得了经皮穿刺的个体化安全定位。
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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来源期刊
CiteScore
4.90
自引率
23.30%
发文量
150
审稿时长
3 months
期刊介绍: Research areas within the scope of the journal include: Interaction of x-rays with matter: x-ray phenomena, biological effects of radiation, radiation safety and optical constants X-ray sources: x-rays from synchrotrons, x-ray lasers, plasmas, and other sources, conventional or unconventional Optical elements: grazing incidence optics, multilayer mirrors, zone plates, gratings, other diffraction optics Optical instruments: interferometers, spectrometers, microscopes, telescopes, microprobes
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