• DocumentCode
    3111679
  • Title

    Simulation of retinal function A fuzzy-linear approach

  • Author

    Perez, Meir ; Davidson, Robert O. ; Rubin, David M. ; Marwala, Tshilidzi

  • Author_Institution
    Sch. of Electr. & Inf. Eng., Univ. of the Witwatersrand, Johannesburg
  • fYear
    2008
  • fDate
    12-15 Oct. 2008
  • Firstpage
    1079
  • Lastpage
    1084
  • Abstract
    The design, simulation and evaluation of a retinal model is presented. The model comprises a fuzzy inference system, modelling macro retinal function, hybridized with a simplified version of an existing linear spacio-temporal filter, modelling micro retinal function. Macro retinal function is simulated using a test image and qualitatively validated against physiological theory. The model could be improved by incorporating the time factor involved in dark and light adaptation, and by modifying the intensity membership functions to depict the true dark and light adaptation thresholds. Micro retinal function is investigated by simulating the simplified existing model using a test video, and critically re-examining the results against a real retinal spike-rate response from the literature. The micro retinal simulation shows some of the essential features of a real retina, but is unrealistic, presumably due to the model being a linear approximation of the retina, which is a non-linear system. Results suggest that the hybridized model is more realistic than the micro retinal model alone. It is anticipated that still more realistic results could be achieved using a Neuro-fuzzy model. Extensions to this model may provide insight into retinal dysfunction with a view to electronic visual augmentation.
  • Keywords
    biology; eye; fuzzy neural nets; electronic visual augmentation; fuzzy inference system; fuzzy linear approach; hybridized model; linear approximation; linear spacio-temporal filter; macro retinal function; membership function; micro retinal function; micro retinal model; micro retinal simulation; neuro-fuzzy model; nonlinear system; physiological theory; retinal dysfunction; spike-rate response; Africa; Degenerative diseases; Design engineering; Fuzzy systems; Image edge detection; Mathematical model; Nonlinear filters; Photoreceptors; Retina; Testing; Edge Detection; Fuzzy inference system; Macula; Resolution variation; Retina; Retinal Model;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Systems, Man and Cybernetics, 2008. SMC 2008. IEEE International Conference on
  • Conference_Location
    Singapore
  • ISSN
    1062-922X
  • Print_ISBN
    978-1-4244-2383-5
  • Electronic_ISBN
    1062-922X
  • Type

    conf

  • DOI
    10.1109/ICSMC.2008.4811425
  • Filename
    4811425