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两层彩色硬脑膜的颅底手术训练用三维前中颅窝模型。

A Three-Dimensional Anterior and Middle Cranial Fossa Model for Skull Base Surgical Training with Two Layers of the Colored Dura Mater.

机构信息

Department of Neurosurgery, Tokyo Medical and Dental University, Bunkyo-ku, Tokyo, Japan.

Department of Neurosurgery, Tokyo Medical and Dental University, Bunkyo-ku, Tokyo, Japan.

出版信息

World Neurosurg. 2023 Aug;176:e575-e586. doi: 10.1016/j.wneu.2023.05.105. Epub 2023 Jun 1.

Abstract

BACKGROUND

Adequate epidural procedures and anatomical knowledge are essential for the technical success of skull base surgery. We evaluated the usefulness of our three-dimensional (3D) model of the anterior and middle cranial fossa as a learning tool in improving knowledge of anatomy and surgical approaches, including skull base drilling and dura matter peeling techniques.

METHODS

Using a 3D printer, a bone model of the anterior and middle cranial fossa was created based on multi-detector row computed tomography data, incorporating artificial cranial nerves, blood vessels, and dura mater. The artificial dura mater was painted using different colors, with 2 pieces glued together to allow for the simulation of peeling the temporal dura propria from the lateral wall of the cavernous sinus. Two experts in skull base surgery and 1 trainee surgeon operated on this model and 12 expert skull base surgeons watched the operation video to evaluate this model subtlety on a scale of 1 to 5.

RESULTS

A total of 15 neurosurgeons, 14 of whom were skull base surgery expert, evaluated, scoring 4 or higher on most of the items. The experience of dural dissection and 3D positioning of important structures, including cranial nerves and blood vessels, was similar to that in actual surgery.

CONCLUSIONS

This model was designed to facilitate teaching anatomical knowledge and essential epidural procedure-related skills. It was shown to be useful for teaching essential elements of skull-base surgery.

摘要

背景

充分的硬膜外程序和解剖学知识对于颅底手术的技术成功至关重要。我们评估了我们的前颅窝和中颅窝的三维(3D)模型作为提高解剖学知识和手术入路(包括颅底钻孔和硬脑膜剥离技术)的学习工具的有用性。

方法

使用 3D 打印机,根据多排探测器计算机断层扫描数据创建了前颅窝和中颅窝的骨模型,其中包含人工颅神经、血管和硬脑膜。人工硬脑膜采用不同颜色进行绘制,将 2 块硬脑膜粘贴在一起,以模拟从海绵窦外侧壁剥离颞骨硬脑膜。2 名颅底外科专家和 1 名受训外科医生在该模型上进行操作,12 名颅底外科专家观看手术视频,对该模型的细微程度进行 1 到 5 的评分。

结果

共有 15 名神经外科医生进行了评估,其中 14 名为颅底外科专家,他们在大多数项目上的评分都在 4 或更高。硬脑膜解剖和包括颅神经和血管在内的重要结构的 3D 定位的经验与实际手术相似。

结论

该模型旨在促进解剖学知识和硬膜外程序相关技能的教学。事实证明,它对于教授颅底手术的基本要素非常有用。

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