An AI-powered suite designed to improve neurovascular outcomes through streamlined care coordination and advanced image analysis.
Vendor
Viz.ai
Company Website




Viz Neuro™ is a comprehensive suite of AI-powered solutions engineered to enhance neurovascular patient care. It streamlines multidisciplinary workflows and facilitates seamless coordination across healthcare networks, assuring prompt and efficient treatment delivery. The platform provides AI alerts for suspected diseases within minutes, allows viewing of AI-enhanced 3D CTA imaging remotely, and enables real-time collaboration among the entire care team. Users can review relevant patient information anytime, anywhere.
The system is particularly effective in detecting and triaging suspected large vessel occlusions (LVO), proven to reduce critical door-in-door-out (DIDO) and door-to-groin (DTG) times. Beyond LVO, Viz Neuro enhances vessel visualization with 3D CTA, reduces motion artifact in CTP scans, accurately detects hemorrhage and measures hyperdense regions, and significantly increases aneurysm detection rates. The platform is committed to precision, consistently assessing and disclosing product performance with high sensitivity and specificity for conditions like LVO (96%/94%), ICH (85%/99%), Aneurysm (94%/94%), and Subdural (91%/96%). It integrates into daily workflows, often accessible via mobile devices for rapid consultation and decision-making.
Features & Benefits
- AI-Powered Care Coordination: Delivers AI alerts for suspected neurovascular diseases, provides AI-enhanced 3D CTA imaging, and facilitates real-time team collaboration.
- Automated LVO Detection & Triage: Automatically identifies and prioritizes large vessel occlusions, significantly reducing time to treatment and improving patient outcomes.
- Advanced Imaging Analysis: Enhances 3D CTA vessel visualization, reduces CTP motion artifacts, detects hemorrhage, measures hyperdense regions, and increases aneurysm detection.
- Proven Precision & Performance: Offers high sensitivity and specificity for critical conditions like LVO, ICH, Aneurysm, and Subdural, with transparent performance disclosure.