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颅底手术解剖学:使用高度详细的交互式图谱进行三维探索。

Operative Anatomy of the Skull Base: 3D Exploration with a Highly Detailed Interactive Atlas.

作者信息

Kockro Ralf A, Schwandt Eike, Ringel Florian, Eisenring Christian Valentin, Nowinski Wieslaw Lucjan

机构信息

Department of Neurosurgery, Hirslanden Hospital, Zürich, Switzerland.

Department of Neurosurgery, University of Mainz, Mainz, Germany.

出版信息

J Neurol Surg B Skull Base. 2021 Jun 3;83(Suppl 2):e298-e305. doi: 10.1055/s-0041-1729975. eCollection 2022 Jun.

DOI:10.1055/s-0041-1729975
PMID:35832960
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9272313/
Abstract

We evaluated the usefulness of a three-dimensional (3D) interactive atlas to illustrate and teach surgical skull base anatomy in a clinical setting.  A highly detailed atlas of the adult human skull base was created from multiple high-resolution magnetic resonance imaging (MRI) and computed tomography (CT) scans of a healthy Caucasian male. It includes the parcellated and labeled bony skull base, intra- and extracranial vasculature, cranial nerves, cerebrum, cerebellum, and brainstem. We are reporting retrospectively on our experiences with employing the atlas for the simulation and teaching of neurosurgical approaches and concepts in a clinical setting.  The study was conducted at the University Hospital Mainz, Germany, and Hirslanden Hospital, Zürich, Switzerland.  Medical students and neurosurgical residents participated in this study.  Handling the layered graphical user interface of the atlas requires some training; however, navigating the detailed 3D content from intraoperative perspectives led to quick comprehension of anatomical relationships that are otherwise difficult to perceive. Students and residents appreciated the collaborative learning effect when working with the atlas on large projected screens and markedly improved their anatomical knowledge after interacting with the software.  The skull base atlas provides an effective way to study essential surgical anatomy and to teach operative strategies in this complex region. Interactive 3D computer graphical environments are highly suitable for conveying complex anatomy and to train and review surgical concepts. They remain underutilized in clinical practice.

摘要

我们评估了三维(3D)交互式图谱在临床环境中用于阐释和教授颅底外科解剖学的实用性。

通过对一名健康白种男性进行多次高分辨率磁共振成像(MRI)和计算机断层扫描(CT),创建了一份高度详细的成人人颅底图谱。它包括经分割和标记的骨性颅底、颅内和颅外血管、颅神经、大脑、小脑和脑干。我们正在回顾性报告在临床环境中使用该图谱进行神经外科手术入路和概念的模拟及教学的经验。

该研究在德国美因茨大学医院和瑞士苏黎世赫尔斯兰登医院进行。

医学生和神经外科住院医师参与了这项研究。

操作图谱的分层图形用户界面需要一些培训;然而,从术中视角浏览详细的3D内容能让人快速理解原本难以察觉的解剖关系。学生和住院医师在大型投影屏幕上使用图谱时体会到了协作学习的效果,并且在与软件交互后其解剖学知识有了显著提高。

颅底图谱为研究该复杂区域的基本手术解剖学和教授手术策略提供了一种有效方法。交互式3D计算机图形环境非常适合传达复杂的解剖结构以及培训和复习手术概念。它们在临床实践中的应用仍未得到充分利用。

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本文引用的文献

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Operative Anatomy of the Human Skull: A Virtual Reality Expedition.人类颅骨手术解剖:虚拟现实探险。
Oper Neurosurg (Hagerstown). 2018 Oct 1;15(4):368-377. doi: 10.1093/ons/opy166.
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A 3D stereotactic atlas of the adult human skull base.成人人类颅底的三维立体定向图谱。
Brain Inform. 2018 May 31;5(2):1. doi: 10.1186/s40708-018-0082-1.
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Microsurgery Simulator of Cerebral Aneurysm Clipping with Interactive Cerebral Deformation Featuring a Virtual Arachnoid.带虚拟蛛网膜的可交互脑变形的脑动脉瘤夹闭术微创手术模拟器
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Aneurysm Surgery with Preoperative Three-Dimensional Planning in a Virtual Reality Environment: Technique and Outcome Analysis.虚拟现实环境下术前三维规划的动脉瘤手术:技术与结果分析
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Virtual and stereoscopic anatomy: when virtual reality meets medical education.虚拟与立体解剖学:虚拟现实遇上医学教育。
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Stereoscopic neuroanatomy lectures using a three-dimensional virtual reality environment.使用三维虚拟现实环境的立体神经解剖学讲座。
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How spatial abilities and dynamic visualizations interplay when learning functional anatomy with 3D anatomical models.在使用 3D 解剖模型学习功能解剖学时,空间能力和动态可视化如何相互作用。
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A meta-analysis of the educational effectiveness of three-dimensional visualization technologies in teaching anatomy.三维可视化技术在解剖学教学中教育效果的荟萃分析。
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A three-dimensional computer-based perspective of the skull base.颅底的三维计算机视角。
World Neurosurg. 2014 Dec;82(6 Suppl):S41-8. doi: 10.1016/j.wneu.2014.07.024.