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How to Build a Patient-Specific Hybrid Simulator for Orthopaedic Open Surgery: Benefits and Limits of Mixed-Reality Using the Microsoft HoloLens

机译:如何构建用于矫形外开放式外科的患者特定的混合模拟器:使用Microsoft Hololens的混合现实的益处和限制

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摘要

Orthopaedic simulators are popular in innovative surgical training programs, where trainees gain procedural experience in a safe and controlled environment. Recent studies suggest that an ideal simulator should combine haptic, visual, and audio technology to create an immersive training environment. This article explores the potentialities of mixed-reality using the HoloLens to develop a hybrid training system for orthopaedic open surgery. Hip arthroplasty, one of the most common orthopaedic procedures, was chosen as a benchmark to evaluate the proposed system. Patient-specific anatomical 3D models were extracted from a patient computed tomography to implement the virtual content and to fabricate the physical components of the simulator. Rapid prototyping was used to create synthetic bones. The Vuforia SDK was utilized to register virtual and physical contents. The Unity3D game engine was employed to develop the software allowing interactions with the virtual content using head movements, gestures, and voice commands. Quantitative tests were performed to estimate the accuracy of the system by evaluating the perceived position of augmented reality targets. Mean and maximum errors matched the requirements of the target application. Qualitative tests were carried out to evaluate workload and usability of the HoloLens for our orthopaedic simulator, considering visual and audio perception and interaction and ergonomics issues. The perceived overall workload was low, and the self-assessed performance was considered satisfactory. Visual and audio perception and gesture and voice interactions obtained a positive feedback. Postural discomfort and visual fatigue obtained a nonnegative evaluation for a simulation session of 40 minutes. These results encourage using mixed-reality to implement a hybrid simulator for orthopaedic open surgery. An optimal design of the simulation tasks and equipment setup is required to minimize the user discomfort. Future works will include Face Validity, Content Validity, and Construct Validity to complete the assessment of the hip arthroplasty simulator.
机译:矫形模拟器在创新的外科培训计划中很受欢迎,受训人员在安全和控制的环境中获得程序经验。最近的研究表明,理想的模拟器应结合触觉,视觉和音频技术来创造沉浸式培训环境。本文探讨了利用漏洞的混合现实的潜力,以开发用于骨科开放手术的混合动力培训系统。髋关节关节造身术,最常见的整形外科手术之一,被选为评估所提出的系统的基准。从患者计算机断层扫描中提取患者特定的解剖3D模型,以实现虚拟内容并制造模拟器的物理分量。快速原型设计用于创建合成骨骼。 Vuforia SDK用于注册虚拟和物理内容。 UNITY3D游戏引擎用于开发软件,允许使用Head Moveation,Gestures和语音命令与虚拟内容交互。通过评估增强现实目标的感知位置来执行定量测试以估计系统的准确性。均值和最大错误匹配目标应用的要求。考虑到视觉和音频感知和互动和人体工程学问题,进行了定性测试以评估洞穴模拟器的漏洞的工作量和可用性。感知的整体工作量低,自我评估的性能被认为是令人满意的。视觉和音频感知和手势和语音互动获得了积极的反馈。姿势不适和视觉疲劳获得了40分钟的模拟会话的非负评价。这些结果鼓励使用混合现实来实现用于矫形外科手术的混合模拟器。需要最优化的仿真任务和设备设置来最小化用户不适。未来的作品将包括面部有效性,内容有效性和构建有效性,以完成髋关节置换术模拟器的评估。

著录项

  • 来源
    《Journal of healthcare engineering.》 |2018年第4期|共12页
  • 作者单位

    Univ Pisa Dept Translat Res &

    New Surg &

    Med Technol EndoCAS Ctr I-56124 Pisa PI Italy;

    Kettering Univ Dept Comp Sci Dept Flint MI 48504 USA;

    Univ Pisa Dept Translat Res &

    New Surg &

    Med Technol EndoCAS Ctr I-56124 Pisa PI Italy;

    Univ Pisa Dept Translat Res &

    New Surg &

    Med Technol EndoCAS Ctr I-56124 Pisa PI Italy;

    Univ Pisa Dept Translat Res &

    New Surg &

    Med Technol Orthopaed &

    Traumatol Div 1 I-56124 Pisa;

    Univ Pisa Dept Translat Res &

    New Surg &

    Med Technol I-56124 Pisa PI Italy;

    Univ Pisa Dept Translat Res &

    New Surg &

    Med Technol EndoCAS Ctr I-56124 Pisa PI Italy;

    Univ Pisa Dept Translat Res &

    New Surg &

    Med Technol EndoCAS Ctr I-56124 Pisa PI Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医用一般科学;
  • 关键词

  • 入库时间 2022-08-20 09:25:04

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