• DocumentCode
    2377651
  • Title

    Capture protocol of forearm sEMG signals with four channels in healthy and amputee people

  • Author

    Sarmiento, J.F. ; Tello, R.G. ; Benevides, A.B. ; Costa, R.M. ; Frizera-Neto, A. ; Bastos-Filho, T.F. ; Arjunan, S.P.

  • Author_Institution
    Univ. Fed. do Espirito Santo/Doutorado RENORBIO, Vitoria, Brazil
  • fYear
    2012
  • fDate
    9-11 Jan. 2012
  • Firstpage
    1
  • Lastpage
    4
  • Abstract
    One of the biggest concerns for control of robotic devices for rehabilitation of amputees is related to the sEMG signal quality. Depending on how clean is the signal, more efficient and effective is the response of the control in relation to the user needs. This article proposes a protocol for sEMG signal capture with the least amount of crosstalk without the use of filters on the forearm with four channels in healthy and amputee people. Extensor digitorum muscle (Channel 1), flexor digitorum superficilis (Channel 2), flexor carpi ulnaris (Channel 3) and flexor pollicislongus (Channel 4) were used. This protocol is used in a series of ten isometric motor tasks related to the movement of the fingers and wrist on the hand. The attenuates 90% of the noise generated by the grid at 59.97 to 60.05 Hz and their harmonics, together with identified unusual noise frequency of 258.1 Hz which was isolated in 75% for the four channels during all motor tasks. This allows the recognition of motor defects with the use of the signal obtained without the use of filters, allowing a lower computational overhead for processing the signal to control a myoelectric hand prosthesis.
  • Keywords
    crosstalk; electromyography; handicapped aids; medical robotics; medical signal detection; medical signal processing; prosthetics; amputee people; amputee rehabilitation; capture protocol; crosstalk; extensor digitorum muscle; fingers; flexor carpi ulnaris; flexor digitorum superficilis; flexor pollicislongus; forearm sEMG signals; frequency 258.1 Hz; frequency 59.97 Hz to 60.05 Hz; healthy people; isometric motor tasks; motor defects; myoelectric hand prosthesis; robotic devices; sEMG signal quality; wrist; Electrodes; Electromyography; Harmonic analysis; Muscles; Noise; Skin; Thumb; Amputees; Crosstalk; Hand Movements; sEMG Signals;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Biosignals and Biorobotics Conference (BRC), 2012 ISSNIP
  • Conference_Location
    Manaus
  • Print_ISBN
    978-1-4673-2476-2
  • Type

    conf

  • DOI
    10.1109/BRC.2012.6222162
  • Filename
    6222162