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颅底的三维计算机视角。

A three-dimensional computer-based perspective of the skull base.

机构信息

Department of Neurosurgery, Hospital Clinic de Barcelona, Faculty of Medicine, Universitat de Barcelona, Barcelona, Spain; Laboratory of Surgical Neuroanatomy, Faculty of Medicine, Universitat de Barcelona, Barcelona, Spain.

Department of Neurosurgery, Hospital Clinic de Barcelona, Faculty of Medicine, Universitat de Barcelona, Barcelona, Spain.

出版信息

World Neurosurg. 2014 Dec;82(6 Suppl):S41-8. doi: 10.1016/j.wneu.2014.07.024.

Abstract

OBJECTIVE

To describe our designed protocol for the reconstruction of three-dimensional (3D) models applied to various endoscopic endonasal approaches that allows performing a 3D virtual dissection of the desired approach and analyzing and quantifying critical surgical landmarks.

METHODS

All human cadaveric heads were dissected at the Laboratory of Surgical Neuroanatomy of the University of Barcelona. The dissection anatomic protocol was designed as follows: 1) virtual surgery simulation systems, 2) navigated cadaver dissection, and 3) postdissection analysis and quantification of data.

RESULTS

The virtual dissection of the selected approach, the preliminary exploration of each specimen, the real dissection laboratory experience, and the analysis of data retrieved during the dissection step provide a complete method to improve general knowledge of the main endoscopic endonasal approaches to the skull base, at the same time allowing the development of new surgical techniques.

CONCLUSIONS

The methodology for surgical training in the anatomic laboratory described in this article has proven to be very effective, producing a depiction of anatomic landmarks as well as 3D visual feedback that improves the study, design, and execution in various neurosurgical approaches. The Dextroscope as a virtual surgery simulation system can be used as a preoperative planning tool that can allow the neurosurgeon to perceive, practice reasoning, and manipulate 3D representations using the transsphenoidal perspective acquiring specifically visual information for endoscopic endonasal approaches to the skull base. The Dextroscope also can be used as an advanced tool for analytic purposes to perform different types of measurements between surgical landmarks before, during, and after dissection.

摘要

目的

描述我们设计的三维(3D)模型重建方案,该方案适用于各种经鼻内镜入路,可对所需入路进行 3D 虚拟解剖,并分析和量化关键手术标志。

方法

所有人类尸体头颅均在巴塞罗那大学外科神经解剖学实验室进行解剖。解剖解剖方案设计如下:1)虚拟手术模拟系统,2)导航尸体解剖,3)解剖后数据分析和量化。

结果

所选入路的虚拟解剖、每个标本的初步探索、真实解剖实验室经验以及在解剖步骤中检索到的数据的分析,提供了一种完整的方法来提高对颅底主要经鼻内镜入路的一般认识,同时允许开发新的手术技术。

结论

本文描述的解剖实验室手术培训方法非常有效,可对解剖标志进行描绘,并提供 3D 视觉反馈,从而改善各种神经外科入路的研究、设计和执行。Dextroscope 作为一种虚拟手术模拟系统,可用作术前规划工具,使神经外科医生能够通过经蝶窦视角感知、练习推理和操纵 3D 表示,从而获得针对颅底经鼻内镜入路的特定视觉信息。Dextroscope 还可用作分析目的的高级工具,以便在解剖前、中、后对手术标志进行不同类型的测量。

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