Røtnes Jan Sigurd, Kaasa Johannes, Westgaard Geir, Eriksen Eivind Myrold, Hvidsten Per Oyvind, Strøm Kyrre, Sørhus Vidar, Halbwachs Yvon, Haug Einar, Grimnes Morten, Fontenelle Hugues, Ekeberg Tom, Thomassen Jan B, Elle Ole Jakob, Fosse Erik
Interventional Centre, National Hospital, Rikshospitalet, N-0027 Oslo, Norway.
Stud Health Technol Inform. 2002;85:419-25.
The introduction of simulators in surgical training entails the need to develop pedagogic platforms adapted to the potentials and limitations provided by the information technology. As a solution to the technical challenges in treating all possible interaction events and to obtain a suitable pedagogic approach, we have developed a pedagogic platform for surgical training, SimMentor.
In SimMentor the procedure to be practiced is divided into a number of natural phases. The trainee will practice on one phase at a time, however he can select the sequence of phases arbitrarily. A phase is taught by letting the trainee alternate freely between 2 modes: 1: A 3-dimensional animated guidance designed for learning the objectives and challenges in a procedure. 2: An interactive training session through the instrument manipulator device designed for training motoric responses based on visual and tactile responses produced by the simulator. The two modes are interfaced with the same virtual reality platform, thus SimMentor allows a seamless transition between the modes.
We have developed a prototype simulator for robotic assisted endoscopic CABG (Coronary Artery Bypass Grafting) procedure by first focusing on the anastomosis part of the operation. Tissue, suture and instrument models have been developed and integrated with a simulated model of a beating heart comprises the elements in the simulator engine that is used in construction a training platform for learning different methods for performing a coronary anastomosis procedure.
The platform is designed for integrating the following features: 1) practical approach to handle interactivity events with flexible-objects 3D simulators, 2) methods for quantitative evaluations of performance, 3) didactic presentations, 4) effective ways of producing diversity of clinical and pathological training scenarios.
手术训练中引入模拟器需要开发适应信息技术潜力和局限性的教学平台。作为应对处理所有可能交互事件的技术挑战以及获得合适教学方法的解决方案,我们开发了一个用于手术训练的教学平台SimMentor。
在SimMentor中,要练习的手术过程被分为多个自然阶段。学员每次在一个阶段上进行练习,然而他可以任意选择阶段顺序。通过让学员在两种模式之间自由切换来教授一个阶段:1. 一种三维动画引导,用于学习手术中的目标和挑战。2. 一个通过器械操纵器设备进行的交互式训练环节,用于基于模拟器产生的视觉和触觉反馈来训练运动反应。这两种模式与同一个虚拟现实平台相连,因此SimMentor允许在模式之间进行无缝切换。
我们通过首先关注手术的吻合部分,开发了一个用于机器人辅助内镜冠状动脉旁路移植术(CABG)的原型模拟器。已经开发了组织、缝线和器械模型,并将其与一个跳动心脏的模拟模型集成,该模型构成了模拟器引擎中的元素,用于构建一个学习不同冠状动脉吻合手术方法的训练平台。
该平台旨在集成以下功能:1. 用灵活物体3D模拟器处理交互事件的实用方法;2. 性能定量评估方法;3. 教学演示;4. 产生临床和病理训练场景多样性的有效方法。