• DocumentCode
    1224681
  • Title

    Linear Homeomorphic Model for Human Movement

  • Author

    Bahill, A.Terry ; Latimer, Jose R. ; Troost, B.Todd

  • Author_Institution
    Biomedical Engineering Program and the Department of Electrical Engineering, Carnegie-Mellon University, Pittsburgh, PA 15213, and the Department of Neurology, University of Pittsburgh Medical School
  • Issue
    11
  • fYear
    1980
  • Firstpage
    631
  • Lastpage
    639
  • Abstract
    The parameter values for this model are specific to the human eye movement systems; however, the form of the model is applicable to other neurological motor control systems. The muscle length-tension diagram was modeled with an ideal spring. The muscle force-velocity relationship was linearized in a manner that produced a linear model. Initial parameter estimates were based on physiological data, human when possible. Then a function minimization program was used to fine tune model parameters. These parameter values were compared to the original physiological data to ensure that they were within the range of variability of the data. The antagonist dashpot value was selected to minimize the mean squared error between human and model responses; the value produced suggested a unique simplified representation for the original physiological data. The parameter estimation routine was applied to make the model match atypical human eye movements; these simulations suggested that glissades in normals are caused by pulsewidth, not pulse height errors.
  • Keywords
    Biomedical engineering; Centralized control; Control systems; Humans; Motor drives; Muscles; Nervous system; Neuromuscular; Parameter estimation; Springs; Eye Movements; Humans; Models, Biological;
  • fLanguage
    English
  • Journal_Title
    Biomedical Engineering, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9294
  • Type

    jour

  • DOI
    10.1109/TBME.1980.326703
  • Filename
    4123154