Philips Gets Up To $33.7 Million ARPA-H Award For Robotic Stroke Care

Philips received up to $33.7 million from ARPA-H to develop AI-enabled robotic systems for remote and increasingly automated stroke procedures.
Royal Philips received an award of up to $33.7 million from the Advanced Research Projects Agency for Health (ARPA-H) to develop AI-enabled robotic technologies for stroke care. The project will focus on remote-assisted and increasingly automated endovascular procedures designed to extend access to specialized treatment.
The award is part of ARPA-H's Autonomous Interventions and Robotics (AIR) program, which is funding research into robotic systems that can perform or assist with medical procedures. ARPA-H lists Philips North America as the prime awardee for the project, called A-RISE.
Philips Develops Robotic Stroke Intervention
Philips will work with Johns Hopkins University, Boston University and J Mocco of Weill Cornell Medicine on the project. The company plans to combine its Azurion image-guided therapy platform with robotics, AI-enabled automation and interventional devices.
The system will be designed for endovascular navigation, robotic device control, image-based procedural guidance, workflow automation and remote intervention. Philips said the technologies will support increasing levels of supervised autonomy under expert clinical oversight.
ARPA-H said the Philips team will combine existing image-guided therapy infrastructure with imitation-learning algorithms and a fluid-driven steerable catheter. The agency said the goal is to create a robot capable of autonomously performing mechanical thrombectomies and other neurointerventional procedures.
The work builds on a growing use of AI in stroke workflows. Recent AI Stroke Care Deployment OSF HealthCare recently expanded RapidAI across 18 hospitals to support stroke imaging and care coordination, illustrating how AI is already being used to move information to specialists faster.
Philips said about 335,000 patients in the U.S. are eligible for thrombectomy each year, but only around 12% receive the procedure. More than half of Americans also live more than an hour from a hospital capable of performing it.
Academic Teams Build Navigation And Catheters
Johns Hopkins University will develop autonomous device navigation under Axel Krieger, PhD, Associate Professor in Mechanical Engineering. Boston University will develop steerable catheters through work led by Tommaso Ranzani, PhD, Associate Professor of Mechanical Engineering and Materials Science & Engineering, and Sheila Russo, Associate Professor in the same departments, according to Philips.
The project is part of a wider ARPA-H effort involving several approaches to robotic stroke intervention. ARPA-H has also funded projects involving magnetic robots, soft vascular robots and simulation systems for autonomous interventions.
Philips said it has more than 20,000 image-guided therapy systems installed across more than 80 countries. The company said the ARPA-H project will build on its work in image-guided therapy while developing technologies that remain under development and subject to applicable regulatory requirements.
The project does not represent a commercially available autonomous stroke system. Philips said future clinical use or commercial availability of the technologies will depend on regulatory requirements.
Key Takeaways
- Philips secures up to $33.7 million from ARPA-H for robotic stroke care development.
- Develop AI-enabled robotic systems to enhance remote and automated stroke procedures.
- Collaborate with Johns Hopkins and Boston University for advanced research and technology integration.
- Focus on improving access to specialized stroke treatment through innovative robotics and automation.