• DocumentCode
    27073
  • Title

    Transfer Function Model of Physiological Mechanisms Underlying Temporal Visual Discomfort Experienced When Viewing Stereoscopic 3D Images

  • Author

    Taewan Kim ; Sanghoon Lee ; Bovik, Alan Conrad

  • Author_Institution
    Dept. of Electr. & Electron. Eng., Yonsei Univ., Seoul, South Korea
  • Volume
    24
  • Issue
    11
  • fYear
    2015
  • fDate
    Nov. 2015
  • Firstpage
    4335
  • Lastpage
    4347
  • Abstract
    When viewing 3D images, a sense of visual comfort (or lack of) is developed in the brain over time as a function of binocular disparity and other 3D factors. We have developed a unique temporal visual discomfort model (TVDM) that we use to automatically predict the degree of discomfort felt when viewing stereoscopic 3D (S3D) images. This model is based on physiological mechanisms. In particular, TVDM is defined as a second-order system capturing relevant neuronal elements of the visual pathway from the eyes and through the brain. The experimental results demonstrate that the TVDM transfer function model produces predictions that correlate highly with the subjective visual discomfort scores contained in the large public databases. The transfer function analysis also yields insights into the perceptual processes that yield a stable S3D image.
  • Keywords
    brain; eye; neurophysiology; transfer functions; visual perception; 3D factors; TVDM transfer function model; binocular disparity; brain; eyes; neuronal elements; perceptual processes; physiological mechanisms; public databases; second-order system; stable S3D image; stereoscopic 3D images; subjective visual discomfort; temporal visual discomfort model; transfer function model; visual pathway; Brain modeling; Muscles; Predictive models; Stereo image processing; Three-dimensional displays; Transfer functions; Visualization; Visual discomfort; accommodation and vergence (A/V) conflict; neural activity; stereoscopic 3D (S3D) image; temporal visual discomfort assessment; temporal visual discomfort model (TVDM);
  • fLanguage
    English
  • Journal_Title
    Image Processing, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1057-7149
  • Type

    jour

  • DOI
    10.1109/TIP.2015.2462026
  • Filename
    7172525