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Articles

Automatic adaptive onset detection using an electromyogram with individual difference for control of a meal assistance robot

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Pages 322-327 | Published online: 09 Jul 2009

References

  • Oskoei M. A., Hu H. Myoelectric control systems—a survey. Biomedical Signal Processing and Control 2007; 2: 275–294
  • Felzer T., Freisleben B. HaWCoS: the hands-free wheelchair control system. Proceedings of the ACM SIGCAPH Conference on Assistive Technologies, 8–10 July 2002, EdinburghScotland. ACM Press, 2002; 127–134
  • Moon I., Lee M., Chu J., Mun M. (2005) Wearable EMG-based HCI for electric powered wheelchair users with motor disabilities. Proceedings of the IEEE International Conference on Robotics and Automation, BarcelonaSpain, April, 18–222005, 2660–2665
  • Pons J. L., Ceres R., Rocon E., Levin S., Markovitz I., Saro B., Reynaerts D., Van Moorleghem W., Bueno L. Virtual reality training and EMG control of the MANUS hand prosthesis. Robotica 2005; 23: 311–317
  • Zhang T., Nakamura M. Neural network-based hybrid human-in-the-loop control for meal assistance orthosis. IEEE Transactions on Neural System & Rehabilitation Engineering 2006; 14: 64–75
  • Fukuda O., Tsujimura K., Tsuji T., Otsuka A. Control of a meal-assistance manipulator using EMG signals. Journal of Japanese Medical Instruments 2004; 74: 229–237
  • Hudgins B., Parker P., Scott R. Control of artificial limbs using myoelectric pattern recognition. Medical & Life Sciences Engineering 1994; 13: 21–38
  • Fukuda O., Tsuji T., Kaneko M., Otsuka A. A human-assisting manipulator teleoperated by EMG signals and arm motions. IEEE Transactions on Robotics and Automation 2003; 19: 210–222
  • Kiguchi K., Esaki R., Tsuruta T., Watanabe K., Fukuda T. An exoskeleton for human elbow and forearm motion assist. Proceedings of IEEE/RSJ International Conference on Intelligent Robots and System. 2003; 3: 3600–3605
  • Thexton A. J. A randomization method for discriminating between signal and noise in recordings of rhythmic electromyographic activity. Journal of Neuroscience Methods 1996; 66: 93–98
  • Hedman L. D., Rogers M. W., Pai Y. C., Hanke T. A. Electromyographic analysis of postural responses during standing leg flexion in adults with hemi-paresis. Electroencephalography and Clinical Neurophysiology 1997; 105: 149–155
  • Sun Q., Sun Y., Ding X., Ma Z. Onset determination of muscle contraction in surface electromyography signals analysis. Proceedings of IEEE International Conference on Information Acquisition, Hong KongPR China27 June–3 July 2005, , 2005; 384–387
  • Bonato P., D'Alessio T., Knaflitz M. A statistical method for the measurement of muscle activation intervals from surface myoelectric signal during gait. IEEE Transactions on Biomedical Engineering 1998; 45: 287–299
  • Merlo A., Farina D., Merletti R. A fast and reliable technique for muscle activity detection from surface EMG signals. IEEE Transactions on Biomedical Engineering 2003; 50: 316–323
  • Kuroiwa S., Yamaguchi A., Ishii K., Matsumoto S., Ishii S., Sato K. (2002) Development of the meal assistance robot. Proceedings of the 17th RESJA Annual Conference, OkayamaJapan, June 27–July 3, 2005, 443–446

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