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VasHealthcare

VasHealthcare provides a robotic platform for vascular interventions, featuring the VAS HERO system that lets physicians operate from a seated, radiation‑free console while the robot precisely manipulates catheters and guidewires. The solution includes AI‑driven pre‑operative planning, tremor filtering, real‑time safety alerts, cloud‑based performance analytics, 5G‑enabled remote operation, and a VR training suite (VAS COACH) to improve procedural accuracy and reduce operator fatigue.

Updated 2 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Vascular interventional procedures often require physicians to work directly at the patient’s bedside under heavy radiation exposure, wearing lead aprons, and performing delicate manual manipulations of catheters and guidewires, which can lead to operator fatigue, infection risk, and limited procedural precision.

Solution

VasHealthcare offers an integrated vascular intervention ecosystem centered on the VAS HERO neuro‑interventional robotic system. The platform separates the physician’s control console from the operating table, allowing seated, radiation‑free operation while the robot replicates hand movements with high precision. AI‑driven pre‑operative planning analyzes imaging data to suggest optimal strategies, and intra‑operative safety modules provide tremor filtering and real‑time motion warnings. Post‑procedure analytics aggregate performance data to support outcome assessment and continuous improvement. The solution also includes 5G‑enabled remote operation, enabling expert guidance from tertiary centers to peripheral hospitals, and a VR‑based training suite (VAS COACH) for simulation‑based skill development.

Target Audience

Primary customers are neuro‑vascular interventional radiologists, neurosurgeons, and interventional cardiologists in tertiary hospitals, as well as regional hospitals seeking remote expert support and advanced training capabilities.

Features

  • Master‑slave robotic architecture with a seated control console that eliminates operator radiation exposure and lead‑apron fatigue
  • High‑precision catheter and guidewire manipulation with tremor suppression and automatic hazardous motion detection
  • AI‑assisted pre‑operative planning and intra‑operative decision support using imaging analytics
  • Cloud‑based data collection for post‑procedure performance analysis and standardized workflow optimization
  • 5G and virtual‑reality integration for remote telesurgery and expert mentorship across hospital tiers
  • VAS COACH virtual‑reality platform for realistic, case‑based training and procedural rehearsal
  • Comprehensive consumable and accessory ecosystem tailored to neuro‑vascular interventions
This profile is AI-generated and may contain inaccuracies.