Next-generation surgical robotics to set a new standard of care in orthopaedic surgery
Ganymed is developing an innovative surgical robot that enhances precision and safety in joint-replacement procedures through computer vision and data-driven insights for orthopaedic surgery.
Projectdetails
Introduction
Driven by a growing and aging population, demand for orthopaedic surgery is rapidly increasing. Orthopaedic surgical techniques, however, have not changed in decades and 95% of procedures are performed without technological assistance. This means that the length and outcome of a procedure is entirely dependent on the experience of the surgeon.
Challenges in Orthopaedic Surgery
Surgical procedures are cumbersome and costly, with conventional instrumentation providing no means to collect data from the operating room (OR) to optimise procedures or facilitate patient-specific surgical planning.
Ganymed's Solution
Ganymed is re-tooling orthopaedics with the next generation of surgical robotics. Our product is the first compact, ergonomic, intuitive, and cost-effective device, supporting surgeons to perform more precise and safer joint-replacement procedures.
Technological Advancements
The robot introduces computer vision-driven intelligence and perception into the OR, enabling contactless localisation of the patient’s anatomy and paving the way for a data-driven OR.
Financiële details & Tijdlijn
Financiële details
Subsidiebedrag | € 2.485.995 |
Totale projectbegroting | € 3.551.422 |
Tijdlijn
Startdatum | 1-1-2022 |
Einddatum | 31-12-2023 |
Subsidiejaar | 2022 |
Partners & Locaties
Projectpartners
- GANYMED ROBOTICSpenvoerder
Land(en)
Vergelijkbare projecten binnen EIC Accelerator
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Transforming everyday surgery into a painless and scarless experienceThe M.I.L.A.N.O. Robotic Platform offers a versatile, portable surgical solution that enables quick setup for various minimally invasive procedures, enhancing patient access and safety. | EIC Accelerator | € 2.499.999 | 2023 | Details |
Novel AI-based system for orthopedic surgery to help surgeons fully automate the pre-operative planning of knee osteotomyPeek Health aims to revolutionize orthopedic surgery planning with AI-based PeekMed-Auto, enhancing care quality and reducing costs while targeting over €40M in revenue by 2026. | EIC Accelerator | € 2.287.922 | 2022 | Details |
Sensory Endovascular RobotSentante is a teleoperated robotic system for endovascular procedures that eliminates X-ray exposure, enhances treatment availability, and integrates seamlessly into clinical workflows. | EIC Accelerator | € 2.491.365 | 2022 | Details |
The Holy Grail in Bone regenerationGreenBone aims to revolutionize bone grafts with a synthetic Rattan wood-based implant that mimics natural bone, enhancing regeneration and targeting the spinal market by 2025. | EIC Accelerator | € 2.458.128 | 2022 | Details |
Accelerating the iMpact of microsurgEry by upscaling production of thE world’s first microsurgical roboT: MUSA
Microsure is launching MUSA, the first CE-certified microsurgical robot, to enhance precision and efficiency in microsurgery, aiming for widespread European adoption by 2029.
Transforming everyday surgery into a painless and scarless experience
The M.I.L.A.N.O. Robotic Platform offers a versatile, portable surgical solution that enables quick setup for various minimally invasive procedures, enhancing patient access and safety.
Novel AI-based system for orthopedic surgery to help surgeons fully automate the pre-operative planning of knee osteotomy
Peek Health aims to revolutionize orthopedic surgery planning with AI-based PeekMed-Auto, enhancing care quality and reducing costs while targeting over €40M in revenue by 2026.
Sensory Endovascular Robot
Sentante is a teleoperated robotic system for endovascular procedures that eliminates X-ray exposure, enhances treatment availability, and integrates seamlessly into clinical workflows.
The Holy Grail in Bone regeneration
GreenBone aims to revolutionize bone grafts with a synthetic Rattan wood-based implant that mimics natural bone, enhancing regeneration and targeting the spinal market by 2025.
Vergelijkbare projecten uit andere regelingen
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Bestrijding Artrose met Operatie Robots
Dit project onderzoekt de haalbaarheid van het aanpassen van operatie robots voor de behandeling van artrose, met als doel precisie, kostenbesparing en gezondheidsvoordelen te realiseren.
ZorgBots
ZorgBots ontwikkelt robotica-oplossingen om zorgmedewerkers te ontlasten en de kwaliteit van persoonlijke zorg te verbeteren.
reGeneRative bone Implant for the treatment of hip dysPlasia
GRIP aims to revolutionize hip dysplasia treatment with personalized, 3D-printed regenerative bone implants, enhancing integration and reducing invasiveness compared to current methods.
Robo-Walk
We ontwikkelen een high-tech robot om revalidatie en beweging te stimuleren bij mensen met loopproblemen, ter verbetering van hun kwaliteit van leven en vermindering van zorgdruk.
Stuurbare instrumenten voor arthroscopie en laparoscopie
Ontwikkeling van innovatieve chirurgische instrumenten voor minimaal invasieve operaties met een nieuwe aansturingstechniek, gericht op verbeterde workflow en patiëntveiligheid.