Compatible with multimodal CTA, DSA and MRA datasets for AI-powered 3D reconstruction and automatic measurement
Visualization and simulation of device deployment and microcatheter pathways for multiple neurointerventional procedures
Microcatheter
Intrasaccular
MicrocatheterShaping Stylet
Intravascular
MicrocatheterShaping Stylet
Customized microcatheter shaping and placement plans are generated based on patient-specific simulations of intracranial vasculature morphology and pathological lesions
The solution automatically simulates the optimal microcatheter tip morphology and quantitatively calculates the 3D geometry of the shaping stylet based on the rebound coefficients of various microcatheter brands
AI Shaping
AI Catheter Shaping
Receives customized microcatheter shaping instructions issued by UKnow® Aneurysm and executes such plans through computer numerical control micromanipulators
Optimizing the procedural precision and efficiency of microcatheter shaping and placement in neurointerventions
Improving first-trial success in microcatheter placement, shortening delivery time, reducing complication risks and enhancing overall clinical outcomes
AI Catheter Shaping Robot
UMate™ Shape
UMate™ Mandrel
Evidence
Clinical Validation
Multi-centerProspectiveRandomized controlled
+45%
Microcatheter first-pass success rate: from 66% to 96%
+88%
First-pass success rate for surgeons with under five years of independent practice: from 50% to 94%
−77%
Microcatheter delivery time reduced from 184s to 43s
Clinical Guideline
Class I Recommendation, Level B Evidence
Recommended microcatheter shaping has been validated and applied in clinical practice