Augmented Reality-based Feedback for Technician-in-the-loop C-arm Repositioning
Mathias Unberath, Javad Fotouhi, Jonas Hajek, Andreas Maier, Greg, Osgood, Russell Taylor, Mehran Armand, Nassir Navab

TL;DR
This paper introduces a marker-free augmented reality system that allows technicians to reposition C-arms accurately without additional X-ray images, significantly reducing radiation exposure during orthopedic procedures.
Contribution
It presents a novel AR-based, technician-in-the-loop solution for C-arm repositioning that eliminates the need for repeated X-ray imaging, enhancing safety and efficiency.
Findings
Reduces X-ray images per view from 2.76 to zero
Decreases radiation dose during C-arm repositioning
Facilitates communication between surgical staff
Abstract
Interventional C-arm imaging is crucial to percutaneous orthopedic procedures as it enables the surgeon to monitor the progress of surgery on the anatomy level. Minimally invasive interventions require repeated acquisition of X-ray images from different anatomical views to verify tool placement. Achieving and reproducing these views often comes at the cost of increased surgical time and radiation dose to both patient and staff. This work proposes a marker-free "technician-in-the-loop" Augmented Reality (AR) solution for C-arm repositioning. The X-ray technician operating the C-arm interventionally is equipped with a head-mounted display capable of recording desired C-arm poses in 3D via an integrated infrared sensor. For C-arm repositioning to a particular target view, the recorded C-arm pose is restored as a virtual object and visualized in an AR environment, serving as a perceptual…
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Taxonomy
TopicsSurgical Simulation and Training · Augmented Reality Applications · Anatomy and Medical Technology
