• DocumentCode
    783646
  • Title

    Spectral cancellation of microstimulation artifact for simultaneous neural recording in situ

  • Author

    Gnadt, James W. ; Echols, Stanley D. ; Yildirim, Abidin ; Zhang, Honglei ; Paul, Kush

  • Author_Institution
    Dept. of Neurobiol. & Behavior, Stony Brook Univ., NY, USA
  • Volume
    50
  • Issue
    10
  • fYear
    2003
  • Firstpage
    1129
  • Lastpage
    1135
  • Abstract
    A fundamental technical hurdle in systems neurophysiology has been to record the activity of individual neurons in situ while using microstimulation to activate inputs or outputs. Stimulation artifact at the recording electrode has largely limited the usefulness of combined stimulating and recording to using single stimulation pulses (e.g., orthodromic and antidromic activation) or to presenting brief trains of pulses to look for transient responses (e.g., paired-pulse stimulation). Using an adaptive filter, we have developed an on-line method that allows continuous extracellular isolation of individual neuron spikes during sustained experimental microstimulation. We show that the technique accurately and robustly recovers neural spikes from stimulation-corrupted records. Moreover, we demonstrate that the method should generalize to any recording situation where a stereotyped, triggered transient might obscure a neural event.
  • Keywords
    adaptive filters; bioelectric potentials; biological techniques; cellular biophysics; neurophysiology; antidromic activation; continuous extracellular isolation; microstimulation artifact; neural event; on-line method; orthodromic activation; paired-pulse stimulation; simultaneous neural recording in situ; spike detection; stereotyped triggered transient might; Adaptive filters; Electrical stimulation; Electrodes; Extracellular; Neurons; Neurophysiology; Robustness; Stochastic resonance; Time domain analysis; Voltage; Action Potentials; Algorithms; Animals; Artifacts; Electric Stimulation; Electrodes, Implanted; Eye Movements; Feedback; Macaca mulatta; Microelectrodes; Neurons; Parietal Lobe; Signal Processing, Computer-Assisted;
  • fLanguage
    English
  • Journal_Title
    Biomedical Engineering, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9294
  • Type

    jour

  • DOI
    10.1109/TBME.2003.816077
  • Filename
    1232482