재활 및 헬스케어를 위한 로봇응용

  • 김동원 (인하공업전문대학 디지털 전자과) ;
  • 이종호 (인하공업전문대학 디지털 전자과) ;
  • 엄우용 (인하공업전문대학 디지털 전자과)
  • 발행 : 2010.09.25

초록

재활 및 헬스케어 분야에서 로봇의 응용은 활동이 필요한 장애자를 돕거나 물리적인 기능이나 인식능력 등을 향상시키기 위해 다양한 치료방법을 제공하는 것으로 나타낼 수 있다. 본 연구에서는 그 동안 국내외적으로 진행된 다양한 로봇의 응용방법과 예를 살펴보고, 이를 통하여 최신 연구동향을 파악하고자 한다.

키워드

참고문헌

  1. H.F.M. Van der Loos, R. Mahoney, and C. Anuni, "Great expectations for rehabilitation mechatronics in the coming decade" . Advances in Rehabilitation Robotics, Lect. Notes Contr. Inf. Sci. vol. 306, pp. 427-433, 2004.
  2. K. Corker, J. H. Lyman, and S. Sheredos, "A preliminary evaluation of remote medical manipulators," Bull. Prosth. Res. vol. 10, pp. 107-134, 1979.
  3. M. Hillman, ''Rehabilitation robotics from past to present -a historical perspective. Advances in Rehabilitation Robotics, Leet. Notes Contr. Inf. Sci. vol. 306, pp. 25-44, 2004.
  4. W. Seamone, G. Schmeisser, ''Early clinical evaluation of a robot ann/work table system for spinal cord injured persons," J. Rehab. Res. Dev., vol. 22. pp. 38-57, 1985.
  5. J. Guittet, H.H. Kwee, N. Quetin, J. Yelon, ''The SPARTACUS telethesis," manipulator control studies, Bull. Prosth. Res. vol. 10, pp. 69-105, 1979.
  6. L. Leifer, Rehabilitative Robots, In: Robotics Age: in the Beginning selected from Robotics Age Magazine, ed. By C. Helmers (Hayden, Hasbrouck 1981), pp. 227-241.
  7. H.I. Krebs, N. Hogan, M.L. Aisen, B.T. Volpe, ''Robot aided neuro rehabilitation," IEEE Trans. Rehabil. Eng. vol. 6, pp. 75-87, 1998. https://doi.org/10.1109/86.662623
  8. P.S. Lum, C.G. Burgar, P.C. Shor, M. Majmundar, and H.F.M. Van der Loos, ''Robot-assisted movement training compared with conventional therapy techniques for the rehabilitation of upper limb motor function following stroke," Arch. Phys. Med. Rehabil. vol. 83, pp. 952-959, 2002. https://doi.org/10.1053/apmr.2001.33101
  9. L.E. Kahn, M.L. Zygman, W.Z. Rymer, and D.J. Reinkensmeyer," Robot-assisted reaching exercise promotes arm movement recovery in chronic hemiparetic stroke: A randomized controlled pilot study," J. Neuroeng. Neurorehab. vol. 3, no.12, 2006.
  10. F. Amirabdollahian, R. Loureiro, E. Gradwell, C. Collin, W. HarWin, and G. Johnson, 'Multivariate analysis of the Fugl-Meyer outcome measures assessing the effectiveness of GENTLE/s robot mediated stroke therapy," J. Neuroeng. Rehab. vol 19, no. 4. 2007.
  11. T. Nef, R. Riener, "ARMin-Design of a novel ann rehabilitation robot, 'Proceedings of the 2005 IEEE Int'l Conf. Rehabilitation Robotics, pp. 57-60, 2005.
  12. E. Wolbracht, J.Leavitt, D. Reinkensmeyer, and J. Bobrow, "Control of a pnemnatic orthosis for upper extremity stroke rehabilitation," IEEE Eng. in Med. & Bio. Conf. pp. 2687-2693, 2006.
  13. S. Hesse and D. Uhlenbrock," A mechanized gait trainer for restoration of gait," J. Rehab. Res. Dev. vol, 37, pp. 701-708, 2000.
  14. G. Colombo, M. Joerg, R. Schreier, and V. Dietz," Treadmill training of paraplegic patients with a robotic orthosis, J. Rehab. Res. Dev. vol. 37, pp. 693-7000, 2000.
  15. HealthSouth: http://www.autoambulator.com
  16. J.L. Emken, R Benitez, and D.J. Reinkensmeyer, ''Human-robot cooperative movement training learning a movel sensory motor transformation during walking with robotic assistance-as-needed," J. Neuroeng. Rehab. vol 4, no. 8, 2007.
  17. C. Carignan and H. Krebs, "Telerehabilitation robotics: Bright lights, big future?;' J. Rehabil. Res. Dev. vol 43, pp. 695-710, 2006. https://doi.org/10.1682/JRRD.2005.05.0085
  18. J.J. Wagner, H.F.M. Van der Loos, and L.J. Leifer, "Construction of social relationships between user and robot," Robot. Autonom Syst. vol.31, pp. 185-191, 2000. https://doi.org/10.1016/S0921-8890(99)00107-4
  19. R. Gelin, B. Lesigne, M. Busnel, and J.P. Michel, "The first moves of the AFMASTER workstation," Adv. Robot. vol. 14, pp. 639-649, 2001. https://doi.org/10.1163/156855301742067
  20. M. Topping, "The development of Handy 1," a rehabilitation robotic system to assist the severely disabled, Ind Robot vol. 25, pp. 316-320, 1998. https://doi.org/10.1108/01439919810232459
  21. H.H. Kwee, "Intergrated control of MANUS manipulator and wheelchair enhanced by environmental docking, Robotica, vol. 16, pp. 491-498, 2000.
  22. R.C. Simpson, D. Poirot, and F. Baxter, ''The Hephaestus smart wheelchair system," IEEE Trans. Neural Syst. Rehab. Eng. vol.10, pp.118-122, 2002. https://doi.org/10.1109/TNSRE.2002.1031980
  23. H. Yanco, ''Wheelesley: A robotic wheelchair system: Indoor navigation and user interface," Assist. Technol. Artific. Intell. pp. 256-268, 1998.
  24. A.J. Brisben, A.D. Lockerd, and C. Lathan, 'Design evolution of an interactive robot for therapy," Telemed. J. E-Health, vol. 10, pp. 252-259, 2004. https://doi.org/10.1089/tmj.2004.10.252
  25. Y. Kusuda, "How Japan sees the robotics for the future: observation at the World Expo 2005, Ind Robot. vol. 33, pp. 11- 18, 2006. https://doi.org/10.1108/01439910610638180
  26. J.F. Engelberger, Robotics in Service, MIT Press, Cambridge 1989.
  27. Z. Bien and D. Stefanov, Advances in Rehabilitation Robotics, Springer, Berlin 2004.
  28. E. Prassler, G. Lawitzky, A Stopp, and G. Gnunwald, Advances in Human-Robot Interaction, Springer, Berlin 2004.