Stone Nelson N, Wilson Michael P, Griffith Steven H, Immerzeel Jos, Debruyne Frans, Gorin Michael A, Brisbane Wayne, Orio Peter F, Kim Laura S, Stone Jonathan J
Department of Urology, The Icahn School of Medicine at Mount Sinai, New York, NY.
Viomerse, Inc, Pittsford, NY.
Surg Open Sci. 2022 Jun 23;10:27-33. doi: 10.1016/j.sopen.2022.06.004. eCollection 2022 Oct.
The objective was to investigate the use of an augmented reality headset to remotely train clinicians on medical devices using anatomic models.
Disease-specific phantoms were developed to train physicians in mpMRI-guided fusion prostate biopsy, brachytherapy, and rectal spacer insertion. Training was remotely demonstrated using 1-way virtual video conferencing format. Participants responded to an educational content survey. A heads-up display with software and augmented reality was used for remote 2-way training with the proctor and student using on their own phantoms.
The virtual video meeting took place during a prostate cancer conference in 2020, while the augmented reality training occurred in 2021. The proctor and student wore a heads-up display containing a projector and webcam where the ultrasound image was displayed onto a see-through optic along with the physician's hands. The heads-up display allowed the proctor to teach by line-of-sight while the student watched and repeated the steps.
Faculty with expertise with the medical devices used in these procedures provided training to urologists unfamiliar with these techniques.
Participants responded that the 1-way training on the phantoms was realistic and mimicked human tissue. A total of 70.9% requested more training or training on the phantoms. The remote training platform was successfully beta tested at the 2 locations in transperineal prostate biopsy and rectal spacer insertion.
Remote training using augmented reality eliminates the need for travel. For training programs and workshops, this technology may mitigate the risk of infectious exposures, reduce training cost, and increase proctor availability, allowing training from their own institution or clinic.This investigation qualifies for the Accreditation Council for Graduate Medical Education competency in medical knowledge.
本研究旨在探讨使用增强现实耳机,通过解剖模型对临床医生进行医疗设备的远程培训。
开发了针对特定疾病的模型,用于培训医生进行磁共振成像(mpMRI)引导下的融合前列腺活检、近距离放射治疗和直肠间隔置入。采用单向虚拟视频会议形式进行远程演示培训。参与者对教育内容进行了调查。使用带有软件和增强现实功能的平视显示器,由监考人员和学员各自使用模型进行远程双向培训。
虚拟视频会议于2020年在一次前列腺癌会议期间举行,而增强现实培训于2021年进行。监考人员和学员佩戴包含投影仪和网络摄像头的平视显示器,超声图像与医生手部影像一同显示在透视光学镜片上。平视显示器使监考人员能够通过视线进行教学,学员观看并重复操作步骤。
熟悉这些手术中使用医疗设备的教员,为不熟悉这些技术的泌尿科医生提供培训。
参与者反馈,对模型的单向培训逼真,模拟了人体组织。共有70.9% 的人要求进行更多培训或针对模型的培训。远程培训平台在经会阴前列腺活检和直肠间隔置入的两个地点成功进行了测试。
使用增强现实的远程培训消除了出行需求。对于培训项目和研讨会而言,这项技术可降低感染风险、降低培训成本并增加监考人员的可用性,使学员能够在自己的机构或诊所接受培训。本研究符合毕业后医学教育认证委员会医学知识能力要求。