论文标题

介入放射学家的基于VR的辐射安全训练系统的概念设计和初步结果

Conceptual Design and Preliminary Results of a VR-based Radiation Safety Training System for Interventional Radiologists

论文作者

Guo, Yi, Mao, Li, Zhang, Gongsen, Chen, Zhi, Pei, Xi, Xu, X. George

论文摘要

最近的研究报告说,在介入放射学(IR)中,从业人员(IR)患有大脑和颈部肿瘤以及白内障的风险增加。 IR的职业辐射保护一直是监管机构和专业社会的主要关注点。为了帮助最大程度地减少IR中的职业辐射暴露,我们概念化了基于虚拟现实(VR)的辐射安全训练系统,以帮助操作员通过类似游戏的交互式模拟来了解复杂的辐射场,并避免使用高辐射区域。该系统的初步开发产生了结果,这表明训练系统可以根据由计算幻像和蒙特卡洛模拟预先计算的数据库来计算和报告辐射暴露,以及由受训者戴的MS Hololens耳机实时提供的位置信息。此外,霍洛伦斯女士将向学员展示实时剂量率和累积剂量,以帮助他们调整实践。本文介绍了整体硬件和软件设计的概念设计,以及将MS Hololens耳机和复杂的3D X射线场空间分配数据结合起来的初步结果,以创建IR中安全培训目的的混合现实环境。

Recent studies have reported an increased risk of developing brain and neck tumors, as well as cataracts, in practitioners in interventional radiology (IR). Occupational radiation protection in IR has been a top concern for regulatory agencies and professional societies. To help minimize occupational radiation exposure in IR, we conceptualized a virtual reality (VR) based radiation safety training system to help operators understand complex radiation fields and to avoid high radiation areas through game-like interactive simulations. The preliminary development of the system has yielded results suggesting that the training system can calculate and report the radiation exposure after each training session based on a database precalculated from computational phantoms and Monte Carlo simulations and the position information provided in real-time by the MS Hololens headset worn by trainee. In addition, real-time dose rate and cumulative dose will be displayed to the trainee by MS Hololens to help them adjust their practice. This paper presents the conceptual design of the overall hardware and software design, as well as preliminary results to combine MS HoloLens headset and complex 3D X-ray field spatial distribution data to create a mixed reality environment for safety training purpose in IR.

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