From the Department of Pathology, University of Pittsburgh Medical Center (UPMC), Pittsburgh, Pennsylvania (Drs Hanna, Nine, and Pantanowitz and Mr Ahmed); Icahn School of Medicine at Mount Sinai, The Mount Sinai Hospital, New York, New York (Dr Prajapati).
Arch Pathol Lab Med. 2018 May;142(5):638-644. doi: 10.5858/arpa.2017-0189-OA. Epub 2018 Jan 31.
Context Augmented reality (AR) devices such as the Microsoft HoloLens have not been well used in the medical field. Objective To test the HoloLens for clinical and nonclinical applications in pathology. Design A Microsoft HoloLens was tested for virtual annotation during autopsy, viewing 3D gross and microscopic pathology specimens, navigating whole slide images, telepathology, as well as real-time pathology-radiology correlation. Results Pathology residents performing an autopsy wearing the HoloLens were remotely instructed with real-time diagrams, annotations, and voice instruction. 3D-scanned gross pathology specimens could be viewed as holograms and easily manipulated. Telepathology was supported during gross examination and at the time of intraoperative consultation, allowing users to remotely access a pathologist for guidance and to virtually annotate areas of interest on specimens in real-time. The HoloLens permitted radiographs to be coregistered on gross specimens and thereby enhanced locating important pathologic findings. The HoloLens also allowed easy viewing and navigation of whole slide images, using an AR workstation, including multiple coregistered tissue sections facilitating volumetric pathology evaluation. Conclusions The HoloLens is a novel AR tool with multiple clinical and nonclinical applications in pathology. The device was comfortable to wear, easy to use, provided sufficient computing power, and supported high-resolution imaging. It was useful for autopsy, gross and microscopic examination, and ideally suited for digital pathology. Unique applications include remote supervision and annotation, 3D image viewing and manipulation, telepathology in a mixed-reality environment, and real-time pathology-radiology correlation.
增强现实(AR)设备,如微软 HoloLens,在医学领域的应用并不广泛。目的是检验 HoloLens 在病理学的临床和非临床应用。设计使用 Microsoft HoloLens 在解剖时进行虚拟标注,查看 3D 大体和显微镜下的病理标本,浏览全切片图像,远程病理学,以及实时病理学-放射学关联。结果佩戴 HoloLens 进行解剖的病理住院医师通过实时图表、标注和语音指令接受远程指导。可以将 3D 扫描的大体病理标本作为全息图进行查看,并轻松进行操作。大体检查和术中咨询期间都支持远程病理学,允许用户远程访问病理学家以获得指导,并实时虚拟标注标本上的感兴趣区域。HoloLens 允许将 X 光片与大体标本进行配准,从而增强定位重要病理发现的能力。HoloLens 还允许使用 AR 工作站轻松查看和导航全切片图像,包括多个配准的组织切片,便于进行容积病理学评估。结论 HoloLens 是一种具有多种临床和非临床应用的新型 AR 工具。该设备佩戴舒适,易于使用,提供足够的计算能力,并支持高分辨率成像。它适用于解剖、大体和显微镜检查,非常适合数字病理学。独特的应用包括远程监督和标注、3D 图像查看和操作、混合现实环境中的远程病理学、以及实时病理学-放射学关联。