Friedl Reinhard, Preisack Melitta B, Klas Wolfgang, Rose Thomas, Stracke Sylvia, Quast Klaus J, Hannekum Andreas, Gödje Oliver
Department of Cardiac Surgery, University of Ulm, Germany.
Heart Surg Forum. 2002;5(3):E17-21.
Computer assisted teaching plays an increasing role in surgical education. The presented paper describes the development of virtual reality (VR) and 3D visualizations for educational purposes concerning aortocoronary bypass grafting and their prototypical implementation into a database-driven and internet-based educational system in heart surgery.
A multimedia storyboard has been written and digital video has been encoded. Understanding of these videos was not always satisfying; therefore, additional 3D and VR visualizations have been modelled as VRML, QuickTime, QuickTime Virtual Reality and MPEG-1 applications. An authoring process in terms of integration and orchestration of different multimedia components to educational units has been started.
A virtual model of the heart has been designed. It is highly interactive and the user is able to rotate it, move it, zoom in for details or even fly through. It can be explored during the cardiac cycle and a transparency mode demonstrates coronary arteries, movement of the heart valves, and simultaneous blood-flow. Myocardial ischemia and the effect of an IMA-Graft on myocardial perfusion is simulated. Coronary artery stenoses and bypass-grafts can be interactively added. 3D models of anastomotique techniques and closed thrombendarterectomy have been developed. Different visualizations have been prototypically implemented into a teaching application about operative techniques.
Interactive virtual reality and 3D teaching applications can be used and distributed via the World Wide Web and have the power to describe surgical anatomy and principles of surgical techniques, where temporal and spatial events play an important role, in a way superior to traditional teaching methods.
计算机辅助教学在外科教育中发挥着越来越重要的作用。本文描述了用于主动脉冠状动脉搭桥术教育目的的虚拟现实(VR)和3D可视化技术的发展,以及它们在心脏手术数据库驱动的基于互联网的教育系统中的原型实现。
编写了多媒体脚本并对数字视频进行了编码。对这些视频的理解并不总是令人满意;因此,额外的3D和VR可视化被建模为VRML、QuickTime、QuickTime虚拟现实和MPEG-1应用程序。已经开始了将不同多媒体组件集成和编排到教育单元的创作过程。
设计了一个心脏虚拟模型。它具有高度的交互性,用户能够旋转它、移动它、放大查看细节甚至进行飞行浏览。可以在心动周期中进行探索,透明模式可展示冠状动脉、心脏瓣膜的运动以及同时的血流情况。模拟了心肌缺血以及IMA移植物对心肌灌注的影响。可以交互式地添加冠状动脉狭窄和搭桥移植物。开发了吻合技术和闭合性血栓内膜切除术的3D模型。不同的可视化已在关于手术技术的教学应用中进行了原型实现。
交互式虚拟现实和3D教学应用程序可以通过万维网使用和分发,并且能够以优于传统教学方法的方式描述手术解剖结构和手术技术原理,其中时间和空间事件起着重要作用。