Remedy Robotics, Inc.
Remedy Robotics is dedicated to providing flawless, immediate endovascular care to patients anywhere in the world by developing remotely operable endovascular robots. Their mission is to make endovascular care accessible globally, starting with stroke treatment, through innovative surgical robotics and machine learning. The company collaborates with experienced clinicians and leading experts to solve high-impact medical problems and improve patient outcomes.
Industries
Nr. of Employees
small (1-50)
Patents
Systems and methods for guidance of intraluminal devices within the vasculature
US-12193764-B2
View DetailsVision-based position and orientation determination for endovascular tools
US-12121307-B2
View DetailsSystems and methods for guidance of intraluminal devices within the vasculature
US-11779406-B2
View Details
Systems and methods for guidance of intraluminal devices within the vasculature
US-12193764-B2
View DetailsVision-based position and orientation determination for endovascular tools
US-12121307-B2
View DetailsSystems and methods for guidance of intraluminal devices within the vasculature
US-11779406-B2
View DetailsProducts
Remotely operable endovascular robotic system (for stroke treatment)
A robotic platform that enables remote performance of endovascular procedures with capabilities for teleoperation, machine-learning-assisted navigation, and hospital integration; initial application focus on ischemic stroke.
Remotely operable endovascular robotic system (for stroke treatment)
A robotic platform that enables remote performance of endovascular procedures with capabilities for teleoperation, machine-learning-assisted navigation, and hospital integration; initial application focus on ischemic stroke.
Services
On-site integration of robotic systems into hospital environments and operational support for clinical use.
Training and deploying deep neural network models on medical imaging data to support robotic understanding of anatomy and procedural guidance.
Preparation of regulatory documentation, development of quality processes, and audit-readiness activities to support regulatory submissions.
On-site integration of robotic systems into hospital environments and operational support for clinical use.
Training and deploying deep neural network models on medical imaging data to support robotic understanding of anatomy and procedural guidance.
Preparation of regulatory documentation, development of quality processes, and audit-readiness activities to support regulatory submissions.
Expertise Areas
- Endovascular surgical robotics
- Autonomous navigation for catheter-based procedures
- Medical imaging and AI for procedural guidance
- Preclinical and first-in-human clinical study execution
Key Technologies
- Remote surgical robotics / teleoperation
- Deep neural networks for medical imaging
- Autonomous navigation algorithms
- Endovascular catheter navigation techniques
News & Updates
Remedy Robotics will be participating in the Mayo Clinic's Cardiology & Radiology Innovation Summit in May 2025.
Remedy Robotics has completed its First in Human clinical procedures.
The results of Remedy Robotics' trial at UCLA have been published in the American Journal of Neuroradiology.
Remedy Robotics will be participating in the Mayo Clinic's Cardiology & Radiology Innovation Summit in May 2025.
Remedy Robotics has completed its First in Human clinical procedures.
The results of Remedy Robotics' trial at UCLA have been published in the American Journal of Neuroradiology.
Remedy Robotics will be participating in the Mayo Clinic's Cardiology & Radiology Innovation Summit in May 2025.
Remedy Robotics has completed its First in Human clinical procedures.
The results of Remedy Robotics' trial at UCLA have been published in the American Journal of Neuroradiology.
Remedy Robotics will be participating in the Mayo Clinic's Cardiology & Radiology Innovation Summit in May 2025.
Remedy Robotics has completed its First in Human clinical procedures.
The results of Remedy Robotics' trial at UCLA have been published in the American Journal of Neuroradiology.