首页> 外文会议>Conference on Medical Imaging 2008: Visualization, Image-Guided Procedures, and Modeling; 20080217-19; San Diego,CA(US) >A simulator for surgery training: Optimal sensory stimuli in a bone pinning simulation
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A simulator for surgery training: Optimal sensory stimuli in a bone pinning simulation

机译:用于外科手术训练的模拟器:骨钉固定模拟中的最佳感觉刺激

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Currently available low cost haptic devices allow inexpensive surgical training with no risk to patients. Major drawbacks of lower cost devices include limited maximum feedback force and the incapability to expose occurring moments. Aim of this work was the design and implementation of a surgical simulator that allows the evaluation of multi-sensory stimuli in order to overcome the occurring drawbacks. The simulator was built following a modular architecture to allow flexible combinations and thorough evaluation of different multi-sensory feedback modules. A Kirschner-Wire (K-Wire) tibial fracture fixation procedure was defined and implemented as a first test scenario. A set of computational metrics has been derived from the clinical requirements of the task to objectively assess the trainees performance during simulation. Sensory feedback modules for haptic and visual feedback have been developed, each in a basic and additionally in an enhanced form. First tests have shown that specific visual concepts can overcome some of the drawbacks coming along with low cost haptic devices. The simulator, the metrics and the surgery scenario together represent an important step towards a better understanding of the perception of multi-sensory feedback in complex surgical training tasks. Field studies on top of the architecture can open the way to risk-less and inexpensive surgical simulations that can keep up with traditional surgical training.
机译:当前可用的低成本触觉设备允许廉价的外科手术训练而对患者没有风险。低成本设备的主要缺点包括最大反馈力有限,并且无法暴露所发生的力矩。这项工作的目的是设计和实施外科手术模拟器,该模拟器可以评估多感官刺激,从而克服出现的弊端。该模拟器遵循模块化体系结构构建,可以灵活组合并全面评估不同的多传感器反馈模块。定义了Kirschner-Wire(K-Wire)胫骨骨折固定程序,并将其作为第一个测试方案。一组计算指标已从任务的临床需求中得出,目的是客观评估学员在模拟过程中的表现。已经开发了用于触觉和视觉反馈的感官反馈模块,每个模块都具有基本形式,并且还具有增强形式。初步测试表明,特定的视觉概念可以克服低成本触觉设备带来的一些缺陷。仿真器,度量标准和手术方案一起代表了朝着更好地理解复杂的外科训练任务中的多感官反馈感知迈出的重要一步。该架构之上的现场研究可以为无风险且廉价的手术模拟开辟道路,从而可以跟上传统的手术培训的步伐。

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