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使用触觉设备和模拟器用户的工作空间开发和验证微创脊柱手术模拟器的混合现实配置。

Development and Validation of a Mixed Reality Configuration of a Simulator for a Minimally Invasive Spine Surgery Using the Workspace of a Haptic Device and Simulator Users.

机构信息

Department of Mechanical Engineering, McGill University, MacDonald Engineering Building, 817 Rue Sherbrooke Ouest #270, Montréal, Québec, Canada H3A 0C3.

出版信息

Biomed Res Int. 2021 Dec 31;2021:2435126. doi: 10.1155/2021/2435126. eCollection 2021.

Abstract

Most surgical simulators leverage virtual or bench models to simulate reality. This study proposes and validates a method for workspace configuration of a surgical simulator which utilizes a haptic device for interaction with a virtual model and a bench model to provide additional tactile feedback based on planned surgical manoeuvers. Numerical analyses were completed to determine the workspace and position of a haptic device, relative to the bench model, used in the surgical simulator, and the determined configuration was validated using device limitations and user data from surgical and nonsurgical users. For the validation, surgeons performed an identical surgery on a cadaver prior to using the simulator, and their trajectories were then compared to the determined workspace for the haptic device. The configuration of the simulator was determined appropriate through workspace analysis and the collected user trajectories. Statistical analyses suggest differences in trajectories between the participating surgeons which were not affected by the imposed haptic workspace. This study, therefore, demonstrates a method to optimally position a haptic device with respect to a bench model while meeting the manoeuverability needs of a surgical procedure. The validation method identified workspace position and user trajectory towards ideal configuration of a mixed reality simulator.

摘要

大多数手术模拟器利用虚拟或台式模型来模拟现实。本研究提出并验证了一种手术模拟器的工作空间配置方法,该方法利用触觉设备与虚拟模型交互,并根据计划的手术操作利用台式模型提供额外的触觉反馈。完成了数值分析,以确定手术模拟器中使用的触觉设备相对于台式模型的工作空间和位置,并使用设备限制和来自手术和非手术用户的数据验证所确定的配置。为了进行验证,外科医生在使用模拟器之前先在尸体上进行了相同的手术,然后将他们的轨迹与触觉设备的确定工作空间进行比较。通过工作空间分析和收集到的用户轨迹,确定了模拟器的配置是合适的。统计分析表明,参与研究的外科医生的轨迹存在差异,但不受所施加的触觉工作空间的影响。因此,本研究展示了一种针对手术操作的可操作性需求,优化相对于台式模型定位触觉设备的方法。验证方法确定了工作空间位置和用户轨迹,以实现混合现实模拟器的理想配置。

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