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三维增强现实设备临床应用的注册技术。

Registration Techniques for Clinical Applications of Three-Dimensional Augmented Reality Devices.

机构信息

Department of Biomedical EngineeringWashington University in St Louis, McKelvey School of EngineeringSt LouisMO63130USA.

SentiAR, Inc.St. LouisMO63108USA.

出版信息

IEEE J Transl Eng Health Med. 2020 Dec 17;9:4900214. doi: 10.1109/JTEHM.2020.3045642. eCollection 2021.

Abstract

Many clinical procedures would benefit from direct and intuitive real-time visualization of anatomy, surgical plans, or other information crucial to the procedure. Three-dimensional augmented reality (3D-AR) is an emerging technology that has the potential to assist physicians with spatial reasoning during clinical interventions. The most intriguing applications of 3D-AR involve visualizations of anatomy or surgical plans that appear directly on the patient. However, commercially available 3D-AR devices have spatial localization errors that are too large for many clinical procedures. For this reason, a variety of approaches for improving 3D-AR registration accuracy have been explored. The focus of this review is on the methods, accuracy, and clinical applications of registering 3D-AR devices with the clinical environment. The works cited represent a variety of approaches for registering holograms to patients, including manual registration, computer vision-based registration, and registrations that incorporate external tracking systems. Evaluations of user accuracy when performing clinically relevant tasks suggest that accuracies of approximately 2 mm are feasible. 3D-AR device limitations due to the vergence-accommodation conflict or other factors attributable to the headset hardware add on the order of 1.5 mm of error compared to conventional guidance. Continued improvements to 3D-AR hardware will decrease these sources of error.

摘要

许多临床操作将受益于对解剖结构、手术计划或其他对手术至关重要的信息进行直接、直观的实时可视化。三维增强现实(3D-AR)是一种新兴技术,具有帮助医生在临床干预期间进行空间推理的潜力。3D-AR 最有趣的应用涉及直接出现在患者身上的解剖结构或手术计划的可视化。然而,商业上可用的 3D-AR 设备的空间定位误差对于许多临床操作来说太大了。出于这个原因,已经探索了多种方法来提高 3D-AR 注册的准确性。本综述的重点是将 3D-AR 设备与临床环境进行注册的方法、准确性和临床应用。引用的文献代表了将全息图与患者进行注册的各种方法,包括手动注册、基于计算机视觉的注册以及结合外部跟踪系统的注册。在执行与临床相关的任务时,用户准确性的评估表明,大约 2 毫米的精度是可行的。与传统的引导相比,由于融合调节冲突或归因于耳机硬件的其他因素,3D-AR 设备的限制会增加大约 1.5 毫米的误差。对 3D-AR 硬件的持续改进将减少这些误差源。

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