Department of Precision Machinery and Instrumentation, University of Science and Technology of China, Hefei, Anhui, China.
Department of Biomedical Engineering, The Ohio State University, Columbus, USA.
Ann Biomed Eng. 2021 Jan;49(1):287-298. doi: 10.1007/s10439-020-02538-5. Epub 2020 Jun 5.
This paper reports a new type of augmented reality (AR) system that integrates a Microsoft HoloLens device with a three-dimensional (3D) point tracking module for medical training and telementored surgery. In this system, a stereo camera is used to track the 3D position of a scalpel and transfer its coordinates wirelessly to a HoloLens device. In the scenario of surgical training, a virtual surgical scene with pre-recorded surgical annotations is superimposed with the actual surgical scene so that the surgical trainee is able to operate following virtual instructions. In the scenario of telementored surgery, the virtual surgical scene is co-registered with the actual surgical scene so that the virtual scalpel remotely mentored by an experienced surgeon provides the AR guidance for the inexperienced on-site operator. The performance characteristics of the proposed AR telementoring system are verified by benchtop experiments. The clinical applicability of the proposed system in telementored skin grafting surgery and fasciotomy is validated in a New Zealand rabbit model. Our benchtop and in vivo experiments demonstrate the potential to improve surgical performance and reduce healthcare disparities in remote areas with limited resources.
本文报道了一种新型的增强现实(AR)系统,该系统将微软 HoloLens 设备与三维(3D)点跟踪模块集成在一起,用于医学培训和远程手术指导。在该系统中,立体相机用于跟踪手术刀的 3D 位置,并将其坐标无线传输到 HoloLens 设备。在手术培训场景中,带有预录手术注释的虚拟手术场景与实际手术场景叠加,以便手术培训者能够根据虚拟指令进行操作。在远程手术指导场景中,虚拟手术场景与实际手术场景配准,以便由经验丰富的外科医生远程指导的虚拟手术刀为现场经验不足的手术者提供 AR 指导。通过台架实验验证了所提出的 AR 远程指导系统的性能特点。在所建立的新西兰兔模型中验证了所提出的系统在远程皮肤移植和筋膜切开术指导中的临床适用性。我们的台架实验和体内实验证明了该系统具有提高手术效果和减少资源有限的偏远地区医疗保健差异的潜力。