Henn Jeffrey S, Lemole G Michael, Ferreira Mauro A T, Gonzalez L Fernando, Schornak Mark, Preul Mark C, Spetzler Robert F
Division of Neurological Surgery, Barrow Neurological Institute, St Joseph's Hospital and Medical Center, Phoenix, Arizona 85013-4496, USA.
J Neurosurg. 2002 Jan;96(1):144-9. doi: 10.3171/jns.2002.96.1.0144.
The goal of this study was to develop a new method for neurosurgical education based on interactive stereoscopic virtual reality (ISVR). Interactive stereoscopic virtual reality can be used to recreate the three-dimensional (3D) experience of neurosurgical approaches much more realistically than standard educational methods. The demonstration of complex 3D relationships is unrivaled and easily combined with interactive learning and multimedia capabilities. Interactive stereoscopic virtual reality permits the accurate recreation of neurosurgical approaches through integration of several forms of stereoscopic multimedia (video, interactive anatomy, and computer-rendered animations). The content explored using ISVR is obtained through a combination of approach-based cadaver dissections, live surgical images and videos, and computer-rendered animations. These media are combined through an interactive software interface to demonstrate key aspects of a neurosurgical approach (for example, patient positioning, draping, incision, individual surgical steps, alternative steps, relevant anatomy). The ISVR platform is designed for use on a desktop personal computer with newly developed, inexpensive, platform-independent shutter glasses. Interactive stereoscopic virtual reality has been used to capture the anatomy and methods of several neurosurgical approaches. In this paper the authors report their experience with ISVR and describe its potential advantages. The success of a neurosurgical approach is contingent on the mastery of complex, 3D anatomy. A new technology for neurosurgical education, ISVR can improve understanding and speed the learning process. It is an effective tool for neurosurgical education, bridging the substantial gap between textbooks and intraoperative training.
本研究的目标是开发一种基于交互式立体虚拟现实(ISVR)的神经外科教育新方法。与标准教育方法相比,交互式立体虚拟现实能够更逼真地重现神经外科手术入路的三维(3D)体验。复杂3D关系的展示无与伦比,且易于与交互式学习及多媒体功能相结合。交互式立体虚拟现实通过整合多种形式的立体多媒体(视频、交互式解剖学和计算机渲染动画),能够精确重现神经外科手术入路。使用ISVR探索的内容是通过基于手术入路的尸体解剖、实时手术图像和视频以及计算机渲染动画相结合而获得的。这些媒体通过交互式软件界面进行组合,以展示神经外科手术入路的关键方面(例如,患者体位、铺巾、切口、各个手术步骤、替代步骤、相关解剖结构)。ISVR平台设计用于在配备新开发的、价格低廉的、与平台无关的快门眼镜的台式个人计算机上使用。交互式立体虚拟现实已被用于捕捉多种神经外科手术入路的解剖结构和方法。在本文中,作者报告了他们使用ISVR的经验并描述了其潜在优势。神经外科手术入路的成功取决于对复杂3D解剖结构的掌握。作为一种神经外科教育的新技术,ISVR可以提高理解并加快学习过程。它是神经外科教育的有效工具,弥合了教科书与术中培训之间的巨大差距。