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Pilot Evaluation Study of a Virtual Paracentesis Simulator for Skill Training and Assessment: The Beneficial Effect of Haptic Display

机译:虚拟腹腔穿刺模拟器用于技能训练和评估的先导评估研究:触觉显示的有益效果

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Effective, real-time training of health care professionals in invasive procedures is a challenging task. Furthermore, assessing in practice the acquisition of the dexterity and skills required to safely perform such operations is particularly difficult to perform objectively and reliably. The development of virtual reality (VR) simulators offers great potential toward these objectives, and can help bypass some of the difficulties associated with classical surgical training and assessment procedures. In this context, we have developed a prototype VR simulator platform for training in a class of invasive procedures, such as accessing central vessels. This paper focuses more particularly on a pilot study treating the specific application case of subclavian vein paracentesis. The simulation incorporates 3D models of all the human anatomy structures involved in this procedure, where collision detection and response algorithms are implemented to simulate most of the potential complications in accordance with the situations encountered in real clinical practice. Furthermore, haptic display is integrated using a typical force feedback device providing the user with a sense of touch during the simulated operations. Our main objective in this study was to obtain quantitative evaluation results regarding the effect of haptic display on performance. Two user groups participated in the study: (Ⅰ) novice users and (Ⅱ) experienced surgeons. The system automatically provides quantitative assessment scores of users' performance, applying a set of objective measures that also involve the optimality of the needle insertion path and indicators of maneuvering errors. Training and skill assessment performance of the system is evaluated in a twofold manner, regarding respectively: (a) the learning curve of novice users, and (b) the correlation of the system-generated scores with the actual surgical experience of the user. These performance indicators are assessed with respect to the activation of the haptic display and to whether this has any beneficial effect (or not). The experimental findings of this first pilot study provide quantitative evidence about the significance of haptic display, not only as a means to enhance the realism of the surgical simulation, but especially as an irreplaceable component for achieving objective and reliable skill assessment, Further larger-scale and long-term clinical studies are needed to validate the effectiveness of such platforms for actual training and
机译:对医疗保健专业人员进行有创程序的有效,实时培训是一项艰巨的任务。此外,在实践中评估安全地执行此类操作所需的灵活性和技能的获取尤其难以客观且可靠地执行。虚拟现实(VR)模拟器的开发为实现这些目标提供了巨大的潜力,并且可以帮助绕开与经典外科手术训练和评估程序相关的一些困难。在这种情况下,我们开发了一个原型VR仿真器平台,用于在一类侵入性程序(例如进入中央血管)中进行训练。本文更侧重于治疗锁骨下静脉穿刺的具体应用案例的初步研究。该模拟过程包含此过程涉及的所有人体解剖结构的3D模型,其中根据实际临床实践中遇到的情况,实施了碰撞检测和响应算法来模拟大多数潜在的并发症。此外,使用典型的力反馈设备来集成触觉显示器,从而在模拟操作期间为用户提供触摸感。我们在这项研究中的主要目的是获得有关触觉显示对性能的影响的定量评估结果。有两个用户组参加了研究:(Ⅰ)新手用户和(Ⅱ)经验丰富的外科医生。该系统采用一组客观措施,自动提供用户表现的定量评估分数,这些客观措施还包括针头插入路径的最佳性和操纵误差的指标。以两种方式对系统的培训和技能评估性能进行评估,分别涉及:(a)新手用户的学习曲线,以及(b)系统生成的分数与用户的实际手术经验的相关性。针对触觉显示器的激活以及是否具有任何有益效果,对这些性能指标进行评估。这项首次试点研究的实验结果提供了有关触觉显示重要性的定量证据,不仅是增强手术模拟真实性的一种手段,而且尤其是作为实现客观和可靠的技能评估的不可替代的组成部分。需要进行长期的临床研究,以验证此类平台在实际训练中的有效性,以及

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