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STW Perspectief

STW Perspectief. Smart mobility devices for improved mobility and independent living. STW-Perspectief. Doelstelling Oplossen van innovatie-knelpunten Ontwikkelen van nieuwe technologie Multidisciplinaire aanpak Samenwerking met gebruikers Medefinanciering door private partijen

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STW Perspectief

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  1. STW Perspectief Smart mobility devices for improved mobility and independent living

  2. STW-Perspectief Doelstelling • Oplossen van innovatie-knelpunten • Ontwikkelen van nieuwe technologie • Multidisciplinaire aanpak • Samenwerking met gebruikers • Medefinanciering door private partijen • Valorisatie en ondernemerschap • Vernieuwende kennis tot toepassing brengen

  3. STW-Perspectief Schema • Fase A: programma-initiatief – 17 juni STW-website, match-making • Fase B: programma-ontwerp – 30 augustus Voorstel, 6 x A4 • Fase C: programmavoorstel – ? ? ? Uitgebreid voorstel met coherente set projecten

  4. STW-Perspectief Match-making • onderzoeksthema afbakenen • onderzoeksthema invullen • opbouw programma vaststellen • stakeholders uitnodigen • toekomstige onderzoeksgemeenschap structureren • deelnemers werven

  5. STW-Perspectief Eisen • Minimaal 3 universiteiten • Niet regionaal • Onderzoekers nemen deel aan max 1 voorstel • Ontwikkeling nieuwe technologie • Onderscheidend van andere netwerken • Aansluiting thema met strategisch beleid van uni’s

  6. STW-Perspectief Eisen • Innovatie-/utilisatiefocus en/of nieuwe multidisciplinaire samenwerking • Minimaal 5 bedrijven of gebruikers • Cofinanciering: 25% van > k€ 500 • Bijdrage in steunbrief melden • Looptijd max 6 jaar

  7. STW-Perspectief Programma-ontwerp • onderbouwing van de onderzoekslijnen • type en aantal projecten • schatting en onderbouwing financiële middelen • Budget 2 - 7,5 M€

  8. SPRINT thema’s • Interactive training programs and devices to prevent falls • Interactive training programs and devices for rehabilitation at home • Smart prostheses and orthoses, patient-driven

  9. Research en Technologie • Control technologies, based on Discovery Learning • Sensor technologies for balance, motion, activation • Training technologies to improve balance • Rehabilitation technologies to restore walking • Interface technologies to implement serious gaming • Smart, self-learning algorithms for dynamic feedback • User interfaces for telemonitoring • Smart prostheses, orthoses, wheelchairs • Implementation in care and valorisation

  10. Projecten • Voorbeeld van omvang project: 2 promovendi à k€ 180 + bench fee =k€ 500 • Max 15 van deze projecten

  11. Deelnemers Universities • UMCG (including: Center for Rehabilitation, NeuroImaging Center, departments of Orthopaedics, Biomedical Engineering, Human Movement Sciences, Neurology, Medical Physiology, ENT • RUG (Institute for Mathematics and Informatics, Departments of Discrete Technology & Production Automation and Business & ICT. • UT (Departments of Biomechanical Engineering, Biomedical Signals & Systems, Design, Production and Management) Private research groups • Healthcare Innovation Forum • INCAS3, Assen • Gameship, Leeuwarden • Roessingh RRD, Enschede • Waag Society Amsterdam

  12. Deelnemers • IMDS, Roden • Indes, Enschede • Lode, Groningen • McRoberts, Den Haag • Meditas, Drachten • Motek Medical, Amsterdam • Motion Projects, Utrecht • NewCom, Opende • OIM Orthopedie, Assen • Otto Bock, Son en Breugel, Duderstadt (D) • Personal Space Technologies, Amsterdam • Pezy, Groningen • STT, Tolbert • Technologies88, Leeuwarden • Umaco, Groningen • Xsens, Enschede • Össur, Son en Breugel, Reyjavik (IJsland) Healthcare institutions • Roessingh Rehabilitation, Enschede • Rehabilitation Friesland, Beetsterzwaag • Rehabilitation Doorn • St. Maartenskliniek, Nijmegen Industry • Ambroise, Enschede • AtosOrigin Consultancy, Utrecht • aXion, Groningen • Baat Engineering, Hengelo • Demcon, Oldenzaal • Durea, Drunen • Eriks aandrijftechniek, Schoonhoven • Evocare, Hengelo • Gameship, Leeuwarden • Grendel Games, Leeuwarden In total 133 fte

  13. Ontwikkeltraject Strength of SPRINT: participation of all stages of the development chain Research& technology Industry Care providers Patient Groups Transfer Implemen-tation Therapy development

  14. Potentiële projecten • Validating & tuning leg prosthesis for improved lateral balance • Knee orthosis to promote cartilage repair • Intelligent ankle-foot-orthosis for slack paresis • Applied digital techniques for fitting and manufacturing of orthopaedic aids • Load bearing sensor to prevent overloading during rehabilitation • Infection prevention of osteo-integrated transfemoral prostheses

  15. Potentiële projecten • Sensing slip with a lower limb prosthesis • Reducing debubitus ulcers Using surface technology • Alternative wheelchair propulsion mechanisms • Rehabilitation of fine finger motion control after stroke using a home-based system • Improving balance of elderly persons by vibrating insoles • Low-cost adjustable lower leg prosthesis for 3rd world countries

  16. Contactpersoon Prof. Bart Verkerke, g.j.verkerke@gmail.com

  17. Match-making

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