architecture

实时追踪增强现实显示系统在肌肉骨骼注射中的可用性


目的:由于存在诸多工作空间和可用性方面的限制,在临床实践中,基于增强现实(AR)引导的影像引导穿刺介入操作鲜有开展。我们提出了一种基于实时光学追踪技术的影像叠加系统,旨在提高影像引导下肌肉骨骼注射操作的效率,并评估其在床旁临床环境中的可用性。方法:该影像叠加系统由一个光学追踪式阅片架、一台平板电脑和一面半透镜组成;用户可通过基于开源应用平台“3D Slicer”开发的软件,实时浏览和操作扫描获取的患者体数据影像。我们开展了一系列实验,在采用不同影像分辨率的条件下,对该系统的延迟(Latency)及屏幕刷新率进行了评估。为进一步评估该系统及配套软件的可用性,我们邀请了五位医疗专业人员在实际使用影像叠加功能的同时浏览患者影像,并请他们填写问卷以对该系统进行综合评价。结果:在对系统处理不同尺寸扫描影像时的延迟进行评估时,测得其屏幕刷新率约为 5 FPS。研究结果显示,参与者普遍认为该影像叠加系统易于上手;此外,他们一致认为,相比于手持式系统,桌面支架式系统的可用性和操作有效性均显著更优。结论:评估结果表明,在处理不同尺寸的扫描影像时,该系统的延迟表现基本保持一致。在可用性研究环节中,参与者普遍倾向于选用桌面支架式系统,而非手持式系统。此外,参与者一致认为该系统本身设计简洁,易于理解与操作。基于上述研究结果,该影像叠加系统在临床环境中的应用前景十分广阔。

© (2017) 版权归国际光学工程学会(SPIE)所有。本摘要仅供个人非商业用途下载阅读。



Usability of a real-time tracked augmented reality display system in musculoskeletal injections
Zachary BaumTamas UngiAndras LassoGabor Fichtinger
Abstract
PURPOSE: Image-guided needle interventions are seldom performed with augmented reality guidance in clinical practice due to many workspace and usability restrictions. We propose a real-time optically tracked image overlay system to make image-guided musculoskeletal injections more efficient and assess its usability in a bed-side clinical environment. METHODS: An image overlay system consisting of an optically tracked viewbox, tablet computer, and semitransparent mirror allows users to navigate scanned patient volumetric images in real-time using software built on the open-source 3D Slicer application platform. A series of experiments were conducted to evaluate the latency and screen refresh rate of the system using different image resolutions. To assess the usability of the system and software, five medical professionals were asked to navigate patient images while using the overlay and completed a questionnaire to assess the system. RESULTS: In assessing the latency of the system with scanned images of varying size, screen refresh rates were approximately 5 FPS. The study showed that participants found using the image overlay system easy, and found the table-mounted system was significantly more usable and effective than the handheld system. CONCLUSION: It was determined that the system performs comparably with scanned images of varying size when assessing the latency of the system. During our usability study, participants preferred the table-mounted system over the handheld. The participants also felt that the system itself was simple to use and understand. With these results, the image overlay system shows promise for use in a clinical environment.
© (2017) COPYRIGHT Society of Photo-Optical Inst