Discover cutting-edge AI tools designed to transform “” workflows. Boost efficiency, simplify tasks, and stay ahead with smart, innovative solutions.
Discover cutting-edge AI tools designed to transform workflows. Boost efficiency, simplify tasks, and stay ahead with smart, innovative solutions.

Brainomix 360 is a suite of AI-powered imaging decision-support tools for acute stroke (NCCT, CTA, CTP, MRI analysis) and lung disease (CT lung imaging), plus a network-wide analytics dashboard (Vantage); it's aimed at stroke physicians/radiologists, comprehensive and primary stroke centers, stroke networks, and pulmonology/lung-disease clinical teams. The company is a University of Oxford spinout headquartered in Oxford, UK.

Harrison.ai Comprehensive Care is an AI-assisted triage and notification (CADt) platform for chest X-ray and non-contrast head CT that flags time-sensitive and incidental findings including intracranial hemorrhage subtypes, acute infarct, obstructive hydrocephalus, pneumothorax, and vertebral compression fracture to help radiologists reprioritize worklists; it's aimed at radiologists, emergency/acute care teams, teleradiology groups, and hospital administrators. The product is developed by Harrison.ai (formerly branded Annalise.ai), an Australia-headquartered company.

RapidAI is an enterprise clinical AI platform that analyzes CT and other imaging to detect and quantify vascular and neurovascular pathology including stroke, hemorrhage, aneurysm, and pulmonary embolism and routes automated alerts to care teams; it's built for radiologists, neurologists/stroke physicians, care coordination teams, IT departments, and hospital administrators managing imaging-based service lines.

The Full Brain Solution runs in the background, automatically analyzing non-contrast CT and CTA head/neck images immediately after acquisition. If the AI detects a potential acute abnormality such as a large vessel occlusion or intracranial hemorrhage, it flags the study as "high priority" in the radiologist’s worklist and sends an alert to the relevant care team (e.g., neuro-interventionalists) via a mobile app. It functions as a retrospective "safety net" and prioritization engine, ensuring critical cases are read first rather than sitting in a queue.

Viz.ai (Neuro) is the "Operating System" for modern stroke networks. It solves the deadly delay of "phone tag" between the ER, Radiology, and the Neurointerventionalist. By connecting directly to the CT scanner, it uses AI to detect time-sensitive pathologies (like Large Vessel Occlusions) in seconds and triggers a synchronous alert to the entire stroke team on their mobile phones. It effectively turns a linear workflow (Scan -> Read -> Call -> Page -> Call) into a parallel immediate response.