ScopeXR provides an augmented reality platform that projects patient‑specific 3D models onto a surgeon’s view during operations. By registering pre‑operative CT/MRI data to the patient in real time and enabling hands‑free gesture or voice interaction, the system delivers low‑latency holographic visualizations and measurement tools that improve intra‑operative decision‑making for orthopedic, neurosurgical, and cardiovascular procedures.
Funding
Funding not disclosed
Founders
Product
Problem
Surgeons often rely on 2D imaging and limited intra‑operative visual cues, which can hinder spatial understanding of anatomy and increase procedure time or risk.
Solution
ScopeXR offers an augmented reality platform that overlays patient‑specific 3D models onto the surgeon’s field of view during operations. By integrating pre‑operative imaging data with real‑time tracking, the system provides precise anatomical guidance without requiring additional hardware beyond a head‑mounted display. The AR visualizations are rendered with low latency and can be interacted with via gesture or voice commands, allowing clinicians to adjust view angles, toggle structures, and measure distances on demand. This enhances intra‑operative decision‑making, reduces reliance on separate monitors, and supports more accurate and efficient surgical interventions.
Target Audience
Primary users are orthopedic, neurosurgical, and cardiovascular surgeons seeking enhanced intra‑operative visualization, as well as hospitals adopting AR‑assisted operating rooms.
Features
- Real‑time registration of CT/MRI data to patient anatomy using optical tracking
- High‑resolution holographic rendering of organs, vessels, and pathology within the surgeon’s line of sight
- Hands‑free interaction through gesture recognition and voice control
- Integrated measurement tools for distance, angle, and volume calculations
- Compatibility with major head‑mounted AR displays and standard surgical workflows