Braillic provides an Augmented Reality (AR) surgical navigation platform that overlays real-time 3D anatomical models onto the surgeon's view. This system enhances surgical precision and situational awareness by guiding surgeons through procedures with intuitive visual cues.
Funding
Funding not disclosed
Founders
Product
Problem
Traditional surgical navigation systems often rely on external monitors, requiring surgeons to divert their attention from the operative field. This can lead to reduced situational awareness, increased risk of procedural errors, and longer operation times.
Solution
Braillic offers the ArNav system, an Augmented Reality (AR) guided surgical navigation platform designed to enhance surgical precision and safety. ArNav superimposes real-time 3D anatomical models directly onto the surgeon's view of the patient, providing an intuitive overlay of critical structures and procedural pathways. This technology aims to improve surgical comprehension, optimize workflow, and minimize the potential for intraoperative complications. By integrating AR directly into the surgical workflow, Braillic seeks to reduce operative times and improve patient outcomes.
Target Audience
The primary target audience includes surgeons across various specialties, medical device manufacturers seeking to integrate AR capabilities into their platforms, and hospitals looking to adopt advanced surgical navigation technologies.
Features
- Augmented Reality (AR) overlay of 3D anatomical models directly within the surgical field of view.
- Computer vision algorithms for precise registration of virtual anatomy to the patient's physical anatomy.
- AI-powered analysis to identify optimal surgical pathways and highlight critical anatomical landmarks.
- Real-time tracking of surgical instruments relative to the superimposed 3D anatomy.
- Head-mounted display (HMD) integration for hands-free operation and enhanced situational awareness.
- Software development kit (SDK) for integration with existing surgical navigation hardware.