Philips selected for ARPA-H program to advance AI-enabled robotic stroke care
August 26, 2026
- Philips receives up to US$33.7 million award from ARPA-H to expand access to AI-enabled robotic stroke care, supporting the program's goal of expanding access to specialized interventions
- Philips will collaborate with Johns Hopkins University and Boston University to develop technologies for remote and increasingly automated endovascular procedures
- Building on Philips' leadership in image-guided therapy and the Azurion platform, the work lays the foundation for a future interventional suite that integrates robotics, AI-enabled automation and smart devices into a single clinical workflow
Cambridge, MA, USA and Amsterdam, the Netherlands - Royal Philips (NYSE: PHG, AEX: PHIA), a global leader in health technology, today announced it has received an up to US$33.7 million award under the Advanced Research Projects Agency for Health (ARPA-H, an agency within the U.S. Department of Health and Human Services (HHS)) Autonomous Interventions and Robotics (AIR) program, led by Dr. Ileana Hancu, to advance AI-enabled robotic procedure automation for stroke care. Working with Johns Hopkins University, Boston University, and Dr. J Mocco of Weill Cornell Medicine, Philips will develop technologies for remote-assisted and increasingly automated endovascular procedures, helping expand access to advanced stroke care.
Access to timely stroke treatment remains one of healthcare's greatest challenges. In the United States, approximately 335,000 patients each year are eligible for thrombectomy [1], a minimally invasive procedure that, when performed early enough, can reverse the effects of a stroke and prevent long-term disability. Yet only around 12% of eligible patients receive the treatment [1], while more than half of Americans live over an hour from a hospital capable of performing it.[1] Globally, fewer than 3% of eligible patients with large-vessel occlusion receive mechanical thrombectomy, despite stroke remaining the world's second leading cause of death and the third leading cause of death and disability combined.[2][3] Expanding access to these highly specialized procedures requires new approaches that combine imaging, robotics and AI to extend expert care beyond today's stroke centers.
Robotic procedure automation
Philips is advancing robotic procedure automation by integrating imaging, robotics, AI-enabled automation and smart interventional devices on its Azurion image-guided therapy platform. This project will develop technologies for endovascular navigation, robotic device control, image-based procedural guidance, workflow automation and remote intervention. These technologies will be designed to support image-guided procedures while enabling increasing levels of supervised autonomy under expert clinical oversight.
“This ARPA-H program accelerates our long-term vision for image-guided intervention,” said Bert van Meurs, Chief Business Leader Image-Guided Therapy at Philips. “We're helping shape a future where expert care is no longer limited by geography or workforce constraints. The goal is not to replace expertise, but to make expertise scalable and accessible.”
“Strong robotics and AI research has laid the scientific foundation for this effort, building on years of foundational work in image-guided and robotics procedural automation to help expand access to time-critical stroke intervention,” added Betsabeh Madani-Hermann, Head of Research at Philips.
Academic Collaborations
Philips will collaborate with Johns Hopkins University and Boston University as part of the program, combining Philips' expertise in image-guided therapy and workflow automation with leading academic capabilities in robotics, clinical translation and procedure automation. Johns Hopkins University will be responsible for developing autonomous device navigation, led by Axel Krieger, PhD, Associate Professor in Mechanical Engineering. Boston University will be responsible for developing steerable catheters, co-led by Tommaso Ranzani, PhD, Associate Professor in Mechanical Engineering (ME) and Materials Science & Engineering (MSE); and Sheila Russo Associate Professor in Mechanical Engineering (ME) and Materials Science & Engineering (MSE).
“Robotics has the potential to improve precision and accuracy in endovascular stroke care, while also extending specialist expertise through remote procedures,” said Dr. J Mocco, Chair of Neurological Surgery at Weill Cornell Medicine and an additional clinical collaborator with Philips. “I am excited to work alongside Philips and the academic partners in this program to translate this potential into clinically meaningful innovation, developing technologies that support clinicians and are designed to improve patient outcomes.”
Today, Philips supports clinicians with more than 20,000 image-guided therapy systems installed across more than 80 countries. Every second, somewhere in the world, a patient is treated using a Philips image-guided therapy system. Building on this global foundation, Philips has more than 40 years of experience in shaping and leading public-private partnerships that accelerate healthcare innovation and complement its global R&D programs. The ARPA-H AIR program represents the next step in that commitment, advancing Philips' vision to help make expert endovascular care available to more patients through innovative image-guided therapies.
Read more
- The future of stroke intervention: Neurosurgeon Dr. J Mocco on the promise of robotics and AI
Dr. J Mocco shares a clinician’s perspective on the challenges facing stroke care today and how robotics and AI could help bring life-saving interventions to more patients.
- Beyond Robotics: The Next Evolution of Image-Guided Therapy
Dr. Atul Gupta explores why robotics is only one part of a much broader transformation – bringing together imaging, AI, intelligent workflows and robotics to extend the reach of clinical expertise.
The technologies described are under development. Future clinical use or commercial availability will be subject to applicable regulatory requirements.
[1] ARPA-H. Autonomous Interventions and Robotics (AIR) Program. Available at: https://arpa-h.gov/explore-funding/programs/air
[2] Asif KS, Otite FO, Desai SM, et al. Mechanical Thrombectomy Global Access For Stroke (MT-GLASS). Circulation. 2023.
[3] World Stroke Organization. Global Stroke Fact Sheet 2025.
For further information, please contact:
Joost Maltha
Philips Global External Relations
Tel.: +31 6 1055816
E-mail: joost.maltha@philips.com
Avi Dines
Philips North America
Tel: +1 781 690 3814
E-mail: avi.dines@philips.com
About Royal Philips
Royal Philips (NYSE: PHG, AEX: PHIA) is a leading health technology company focused on improving people’s health and well-being through meaningful innovation. Philips’ patient- and people-centric innovation leverages advanced technology and deep clinical and consumer insights to deliver personal health solutions for consumers and professional health solutions for healthcare providers and their patients in the hospital and the home.
Headquartered in the Netherlands, the company is a leader in diagnostic imaging, ultrasound, image-guided therapy, monitoring and enterprise informatics, as well as in personal health. Philips generated 2025 sales of EUR 18 billion and employs approximately 64,800 employees with sales and services in more than 100 countries. News about Philips can be found at www.philips.com/newscenter.
Attachments
- Philips Robotics Control Room Visualization for Interventional Procedures
- Philips Azurion Image Guided Therapy Platform
- 读潘胤杰 张梦老师《AP微积分ABBC指导用书》—— 系统且实用的微积分学习指南
- 北京凯尔迪清洗简价:科技赋能,洁净领航
- “小太阳”护眼公益计划深圳站启航,多方携手共筑儿童“光明”未来
- 九章云极位居“主要玩家”!IDC发布中国城市智算中心运营与服务2025年厂商评估
- 河北捷德门业:以匠心铸品质 以创新领未来 铸就工业门领域价值典范
- 亚马逊云科技与伦敦证券交易所集团扩展多年云合作关系
- 浙江星盈律师事务所:以法律之名,守护公平之光
- 桃子健康云链:以产业互联筑牢医疗数智化底座,破解行业碎片化难题
- 展讯|浓墨襟怀 祥泰之州——大土三阳的中国画世界
- 行业大咖驻场!超7万人次观看!itc保伦股份线上沉浸声技术专题讲座圆满成功!
- 九章云极DataCanvas百万度算力免费申领活动狂欢继续!
- 菜百股份荣登《2025胡润中国最具历史文化底蕴品牌榜》
- 沉心再战,圆梦理想大学|2026华大教育高考复读班正式招生
- 广州鼎流生物科技开业典礼暨产品发布会成功举办
- 《匠心金工绽芳华 黄金玫瑰暖万家》—— 中国黄金铿锵玫瑰绽光芒
- “大坚果专家”疆果果——怎一个“大”字了得!
- 耄耋老人重获清晰视界,爱尔英智眼科李秋梅为94岁患者行白内障手术
- 权威指南:揭秘2024年北京十大影响力律师事务所
- Hi3D Launches an AI-Powered Workflow for 3D Printing Creators
- View韩国Motiva假体隆胸美国品牌/韩国技术亲测结果出炉!
- 迪菲密钥交换协议:重塑数字信任,开启可信算力金融时代
- 民生银行湖州分行召开平安保险推动会暨2025开门红业务储备会
- 智驾算法先进程度排名:极氪引领智能驾驶新风潮
- Invixium Acquires Triax Technologies to Expand its Biometric Solutions with AI-based RTLS Offering f
- 中国科学院大学资环学院副院长 刘文彬:破界共生,双碳目标下的技术变革与文明使命
- Teva and Alvotech Announce FDA Approval of Interchangeability for SELARSDI™ (ustekinumab-aekn) with
- 联想全栈AI赋能中超联赛,打造智慧体育区域新样板
- 中线蝶阀的选择与应用
- 露丝·卡文宣布全面采用非笼养鸡蛋的目标 引领烘焙行业可持续发展
- IQM 将量子计算机集成至 Oak Ridge National Laboratory 高性能计算系统





