Wearable headset-assisted fluoroscopic visualization during complex endovascular aortic repair
1Department of Vascular Surgery, Fujita Health University, Toyoake, Japan.
Journal of Vascular Surgery Cases and Innovative Techniques
|August 2, 2026
Summary
A novel wearable headset system provides surgeons with a personal fluoroscopic view during complex endovascular aortic repair (EVAR). This technology enhances visualization for arm-side operators, potentially improving ergonomics and simplifying hybrid operating room setups.
Area of Science:
- Vascular Surgery
- Medical Imaging Technology
- Surgical Navigation
Background:
- Complex endovascular aortic repair (EVAR) often necessitates simultaneous upper-extremity access.
- Arm-side operators in hybrid operating rooms face visualization challenges due to monitor obstruction and positioning.
- Existing secondary monitors may be inadequate for optimal intraoperative visualization.
Purpose of the Study:
- To introduce a wearable headset-assisted fluoroscopic visualization technique for complex EVAR procedures.
- To address the limited or obstructed view faced by arm-side operators in hybrid ORs.
- To evaluate the potential benefits of a personalized virtual fluoroscopy display.
Main Methods:
- A system using commercially available components: XREAL One Pro glasses, wireless HD multimedia interface transmitter, and DVI-to-HDMI connector.
- Live fluoroscopic images are displayed as a virtual monitor within the operator's field of view.
- The see-through display and adjustable shading maintain awareness of the operative field.
Main Results:
- The described technique provides an individualized virtual monitor for the arm-side operator.
- The system allows for stable three-degree-of-freedom or six-degree-of-freedom image display.
- Potential benefits include simplified OR setup, reduced monitor dependence, and improved ergonomics.
Conclusions:
- Wearable headset-assisted fluoroscopic visualization is a promising technique for complex EVAR, especially branched procedures.
- This technology may enhance precision during target-vessel catheterization and bridging stent deployment.
- Further research is required to assess procedural efficiency, radiation exposure, and safety outcomes.


