• DocumentCode
    979008
  • Title

    Sensory nerve recording for closed-loop control to restore motor functions

  • Author

    Popovic, Dejan B. ; Stein, R.B. ; Jovanovic, Ksenija Lj ; Dai, Rongching ; Kostov, Aleksandar ; Armstrong, William W.

  • Author_Institution
    Div. of Neurosci., Alberta Univ., Edmonton, Alta., Canada
  • Volume
    40
  • Issue
    10
  • fYear
    1993
  • Firstpage
    1024
  • Lastpage
    1031
  • Abstract
    A method is developed for using neural recordings to control functional electrical stimulation (FES) to nerves and muscles. Experiments were done in chronic cats with a goal of designing a rule-based controller to generate rhythmic movements of the ankle joint during treadmill locomotion. Neural signals from the tibial and superficial peroneal nerves were recorded with cuff electrodes and processed simultaneously with muscular signals from ankle flexors and extensors in the cat´s hind limb. Cuff electrodes are an effective method for long-term chronic recording in peripheral nerves without causing discomfort or damage to the nerve. For real-time operation the authors designed a low-noise amplifier with a blanking circuit to minimize stimulation artifacts. They used threshold detection to design a simple rule-based control and compared its output to the pattern determined using adaptive neural networks. Both the threshold detection and adaptive networks are robust enough to accommodate the variability in neural recordings. The adaptive logic network used for this study is effective in mapping transfer functions and therefore applicable for determination of gait invariants to be used for closed loop control in an FES system. Simple rule-bases will probably be chosen for initial applications to human patients. However, more complex FES applications require more complex rule-bases and better mapping of continuous neural recordings and muscular activity. Adaptive neural networks have promise for these more complex applications.
  • Keywords
    biocontrol; bioelectric phenomena; closed loop systems; neurophysiology; patient treatment; adaptive neural network; blanking circuit; chronic cat experiments; closed-loop control; cuff electrodes; functional electrical stimulation; gait invariants; hind limb; motor functions restoration; muscles; sensory nerve recording; simple rule-based control; superficial peroneal nerve; tibial nerve; transfer functions mapping; Adaptive control; Adaptive systems; Cats; Electrodes; Muscles; Neural networks; Neuromuscular stimulation; Programmable control; Signal processing; Signal restoration; Action Potentials; Animals; Ankle Joint; Cats; Electric Stimulation Therapy; Feedback; Female; Male; Movement; Neurons, Afferent; Paralysis; Peroneal Nerve; Tibial Nerve;
  • fLanguage
    English
  • Journal_Title
    Biomedical Engineering, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9294
  • Type

    jour

  • DOI
    10.1109/10.247801
  • Filename
    247801