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Design of Mechatronic Standing Frame

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Upright standing is a very significant part of the complex process of rehabilitation. It improves functions of cardio-vascular system. It prevents and helps in healing of contractures. It improves functions of psycho-condition of the patient. We will present a mechatronic standing frame. This device is designed to help people who have lost the use of their legs to stand up with seemingly little effort. The additional module is stimulation correct development of muscles, joints and skeletal system.
Rocznik
Strony
111--120
Opis fizyczny
Bibliogr. 23 poz., il.
Twórcy
autor
  • Department of Applied Mechanics and Robotics, Rzeszów University of Technology
Bibliografia
  • 1. Bock T., Linner T. and Ikeda W.: Exoskeleton and Humanoid Robotic Technology in Construction and Built Environment, The Future of Humanoid Robots - Research and Applications, 2012, p. 111-144.
  • 2. Colombo G., Schreier R., Mayr A., Plewa H., Rupp R.: Novel Tilt Table with integrated robotic stepping mechanism - design Principles and Clinical Application, Proceedings of the 2005 IEEE 9th International Conference on Rehabilitation Robotics Chicago USA, 2005, p. 227-230
  • 3. Dzieliński K.: XI - egzoszkielet od NASA , Geekweek 2012.
  • 4. Gedliczka A., Pochopień P., Szklarska A., Welon Z.: Atlas of human measure. Data for the ergonomic design and evaluation, Centralny Instytut Ochrony Pracy Warsaw, 2001.
  • 5. Havas J.: The ReWalk System, BME, 2012.
  • 6. Kopp C.: Exoskeletons for warriors of the future, Defence Focus, 2012.
  • 7. Mertz L.: The Next Generation of Exoskeletons, IEEE Pulse Vol. 3 No. 4, 2012, p. 56-62.
  • 8. M in P.: Improved Design of a Three-degree of Freedom Hip Exoskeleton Based on Biomimetic Parallel Structure, University of Ontario Institute of Technology Publication, 2011.
  • 9. Molholm V.: Design BoConcept Collection 2011, BoConcept, 2011.
  • 10. Winkler T.: Computer aided design systems anthropotechnical, Wydaw. Naukowo-Techniczne Warsaw, 2005.
  • 11. Wolański N., Niemiec S., Pyżuk M.: Engineering anthropometry, Wyd. Książka i Wiedza Warsaw, 1975.
  • 12. Zelinsky A.: Robot Suit Hybrid Assistive Limb, IEEE Robotics & Automation Magazine, 2009, p. 98-102.
  • 13. Activall Dynamic Standing Frame (Akces-Med company's documentation): www.akcesmed.com [accessed 30.05.14].
  • 14. BTS Anymov (BTS Bioengineering company's documentation): www.btsbioengineering.com [accessed 30.05.14].
  • 15. Famed Products (Famed company's documentation): www.famed.com.pl [accessed 30.05.14].
  • 16. Lifer standing frame (Akces-Med company's documentation): www.akces-med.com [accessed 30.05.14].
  • 17. Master Active Dynamic Drive (Master Dynamic company's documentation) http://www.rekomat-sport.pl [accessed 30.05.14].
  • 18. Medimas Products (Medimas company's documentation): www.medimas.pl [accessed 30.05.14].
  • 19. mPosition (mProfil company's documentation): www.mposition.pl [accessed 30.05.14].
  • 20. Organic Workstation, www.tuvie.com [accessed 30.05.14].
  • 21. Rehauv Dynamic Standing Frame (Akces-Med company's documentation): www.akcesmed.com [accessed 30.05.14].
  • 22. SP-I/E tilt table (Eres Medical company's documentation): www.tech-med.com.pl/pl/staly-do-pionizacji.html [accessed 30.05.14].
  • 23. Workbed concept ergonomic workstation, www.in.pinterest.com [accessed 30.05.14].
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-2b225bf2-e797-4bd2-816b-3d79437739d5
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