Simulated disparity and peripheral blur interact during binocular fusion
Simulated disparity and peripheral blur interact during binocular fusion
We have developed a low-cost, practical gaze-contingent display in which natural images are presented to the observer with dioptric blur and stereoscopic disparity that are dependent on the three-dimensional structure of natural scenes. Our system simulates a distribution of retinal blur and depth similar to that experienced in realworld viewing conditions by emmetropic observers. We implemented the system using light-field photographs taken with a plenoptic camera which supports digital refocusing anywhere in the images. We coupled this capability with an eye-tracking system and stereoscopic rendering. With this display, we examine how the time course of binocular fusion depends on depth cues from blur and stereoscopic disparity in naturalistic images. Our results show that disparity and peripheral blur interact to modify eye-movement behavior and facilitate binocular fusion, and the greatest benefit was gained by observers who struggled most to achieve fusion. Even though plenoptic images do not replicate an individual's aberrations, the results demonstrate that a naturalistic distribution of depth-dependent blur may improve 3-D virtual reality, and that interruptions of this pattern (e.g., with intraocular lenses) which flatten the distribution of retinal blur may adversely affect binocular fusion.
Binocular fusion, Blur, Disparity, Multifocal lenses, Natural images
Maiello, Guido
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Chessa, Manuela
6a3ac515-782f-44a0-9a4e-85ffceb710c5
Solari, Fabio
da14eec1-53f6-45a5-913b-5c13282c1e8e
Bex, Peter J.
6e6bd07d-1136-4163-91d1-1144ef209570
2014
Maiello, Guido
c122b089-1bbc-4d3e-b178-b0a1b31a5295
Chessa, Manuela
6a3ac515-782f-44a0-9a4e-85ffceb710c5
Solari, Fabio
da14eec1-53f6-45a5-913b-5c13282c1e8e
Bex, Peter J.
6e6bd07d-1136-4163-91d1-1144ef209570
Maiello, Guido, Chessa, Manuela, Solari, Fabio and Bex, Peter J.
(2014)
Simulated disparity and peripheral blur interact during binocular fusion.
Journal of Vision, 14 (8), [13].
(doi:10.1167/14.8.13).
Abstract
We have developed a low-cost, practical gaze-contingent display in which natural images are presented to the observer with dioptric blur and stereoscopic disparity that are dependent on the three-dimensional structure of natural scenes. Our system simulates a distribution of retinal blur and depth similar to that experienced in realworld viewing conditions by emmetropic observers. We implemented the system using light-field photographs taken with a plenoptic camera which supports digital refocusing anywhere in the images. We coupled this capability with an eye-tracking system and stereoscopic rendering. With this display, we examine how the time course of binocular fusion depends on depth cues from blur and stereoscopic disparity in naturalistic images. Our results show that disparity and peripheral blur interact to modify eye-movement behavior and facilitate binocular fusion, and the greatest benefit was gained by observers who struggled most to achieve fusion. Even though plenoptic images do not replicate an individual's aberrations, the results demonstrate that a naturalistic distribution of depth-dependent blur may improve 3-D virtual reality, and that interruptions of this pattern (e.g., with intraocular lenses) which flatten the distribution of retinal blur may adversely affect binocular fusion.
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Published date: 2014
Keywords:
Binocular fusion, Blur, Disparity, Multifocal lenses, Natural images
Identifiers
Local EPrints ID: 485058
URI: http://eprints.soton.ac.uk/id/eprint/485058
ISSN: 1534-7362
PURE UUID: c740fae1-3756-49ef-aa5b-6b6719248e83
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Date deposited: 28 Nov 2023 18:05
Last modified: 18 Mar 2024 04:11
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Contributors
Author:
Guido Maiello
Author:
Manuela Chessa
Author:
Fabio Solari
Author:
Peter J. Bex
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