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Towards X-ray free endovascular interventions – using HoloLens for on-line holographic visualisation

机译:寻求无X射线血管内介入治疗–使用HoloLens进行在线全息可视化

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摘要

A major challenge during endovascular interventions is visualising the position and orientation of the catheter being inserted. This is typically achieved by intermittent X-ray imaging. Since the radiation exposure to the surgeon is considerable, it is desirable to reduce X-ray exposure to the bare minimum needed. Additionally, transferring two-dimensional (2D) X-ray images to 3D locations is challenging. The authors present the development of a real-time navigation framework, which allows a 3D holographic view of the vascular system without any need of radiation. They extract the patient's surface and vascular tree from pre-operative computed tomography data and register it to the patient using a magnetic tracking system. The system was evaluated on an anthropomorphic full-body phantom by experienced clinicians using a four-point questionnaire. The average score of the system (maximum of 20) was found to be 17.5. The authors’ approach shows great potential to improve the workflow for endovascular procedures, by simultaneously reducing X-ray exposure. It will also improve the learning curve and help novices to more quickly master the required skills.
机译:血管内介入治疗期间的主要挑战是可视化所插入导管的位置和方向。这通常通过间歇性X射线成像来实现。由于外科医生的辐射量很大,因此希望将X射线的辐射量减少到所需的最低限度。此外,将二维(2D)X射线图像传输到3D位置也是一项挑战。作者介绍了实时导航框架的开发,该框架允许对血管系统进行3D全息照相而无需任何辐射。他们从术前计算机断层扫描数据中提取患者的表面和血管树,并使用磁跟踪系统将其注册给患者。经验丰富的临床医生使用四点问卷在拟人化的全身模型上对该系统进行了评估。该系统的平均分数(最高为20分)为17.5。作者的方法显示出通过同时减少X射线暴露来改善血管内手术流程的巨大潜力。它还将改善学习曲线,并帮助新手更快地掌握所需的技能。

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