Negar Kazemipour, Amir Hooshiar, Marta Kersten-Oertel
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Task completion time, NASA Task Load Index and system-specific questionnaires were used for the evaluation.</p><p><strong>Results: </strong>Both novices and experts preferred the AR system for pedicle screw placement. Novices preferred the haptic system for hip tumor planning, while experts preferred the mouse and keyboard. In the case of heart valve planning, novices preferred the AR system but there was no clear preference for experts. Both groups reported that AR provides the best spatial depth perception.</p><p><strong>Conclusion: </strong>The results of the user studies suggest that different surgical cases may benefit from varying interaction and visualization methods. For example, for planning surgeries with implants and instrumentations, mixed reality could provide better 3D spatial perception, whereas using landmarks for delineating specific targets may be more effective using a traditional 2D interface.</p>","PeriodicalId":51251,"journal":{"name":"International Journal of Computer Assisted Radiology and Surgery","volume":null,"pages":null},"PeriodicalIF":2.3000,"publicationDate":"2024-10-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"A usability analysis of augmented reality and haptics for surgical planning.\",\"authors\":\"Negar Kazemipour, Amir Hooshiar, Marta Kersten-Oertel\",\"doi\":\"10.1007/s11548-024-03207-x\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><strong>Purpose: </strong>Proper visualization and interaction with complex anatomical data can improve understanding, allowing for more intuitive surgical planning. 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引用次数: 0
摘要
目的:对复杂的解剖数据进行适当的可视化和交互可以提高理解能力,使手术规划更加直观。我们的工作目标是研究在手术规划中,与三维医疗数据进行交互的最直观、最实用的平台是什么:我们比较了使用显示器和鼠标、带有触觉设备的显示器以及使用基于手势交互的增强现实(AR)头戴式显示器进行规划。为了确定最直观的系统,我们进行了两项用户研究,一项针对新手,另一项针对专家。研究涉及三个场景的规划:(1) 心脏瓣膜修复;(2) 髋关节肿瘤切除;(3) 椎弓根螺钉置入。评估中使用了任务完成时间、NASA 任务负荷指数和系统特定问卷:结果:新手和专家都更喜欢使用 AR 系统进行椎弓根螺钉置入术。新手更喜欢使用触觉系统进行髋部肿瘤规划,而专家则更喜欢使用鼠标和键盘。在心脏瓣膜规划中,新手更喜欢使用 AR 系统,而专家则没有明显的偏好。两组用户都表示,增强现实技术能提供最佳的空间深度感知:用户研究结果表明,不同的手术案例可能会从不同的交互和可视化方法中获益。例如,在规划植入物和器械的手术时,混合现实可以提供更好的三维空间感知,而使用地标来划定特定目标,使用传统的二维界面可能更有效。
A usability analysis of augmented reality and haptics for surgical planning.
Purpose: Proper visualization and interaction with complex anatomical data can improve understanding, allowing for more intuitive surgical planning. The goal of our work was to study what the most intuitive yet practical platforms for interacting with 3D medical data are in the context of surgical planning.
Methods: We compared planning using a monitor and mouse, a monitor with a haptic device, and an augmented reality (AR) head-mounted display which uses a gesture-based interaction. To determine the most intuitive system, two user studies, one with novices and one with experts, were conducted. The studies involved planning of three scenarios: (1) heart valve repair, (2) hip tumor resection, and (3) pedicle screw placement. Task completion time, NASA Task Load Index and system-specific questionnaires were used for the evaluation.
Results: Both novices and experts preferred the AR system for pedicle screw placement. Novices preferred the haptic system for hip tumor planning, while experts preferred the mouse and keyboard. In the case of heart valve planning, novices preferred the AR system but there was no clear preference for experts. Both groups reported that AR provides the best spatial depth perception.
Conclusion: The results of the user studies suggest that different surgical cases may benefit from varying interaction and visualization methods. For example, for planning surgeries with implants and instrumentations, mixed reality could provide better 3D spatial perception, whereas using landmarks for delineating specific targets may be more effective using a traditional 2D interface.
期刊介绍:
The International Journal for Computer Assisted Radiology and Surgery (IJCARS) is a peer-reviewed journal that provides a platform for closing the gap between medical and technical disciplines, and encourages interdisciplinary research and development activities in an international environment.