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Open Access An Adaptive Blur in Peripheral Vision to Reduce Visual Fatigue in Stereoscopic Vision

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For some years, a lot of Stereoscopic 3D contents have been released. Even if the depth sensation is realistic, it is still not perfect and uncomfortable. The objective of our work is to use the gaze of the user to bring closer artificial vision and natural vision to increase the precision of the perception and decrease visual fatigue. For example, a difference in artificial vision is the accommodation point and the convergence point of the eye. In natural vision, these points are the same whereas in artificial vision event if the convergence point is on the looked object, the accommodation point remains on the screen. This difference bring visual fatigue. In this article, we propose and evaluate the effect of an artificial blur in peripheral vision in order to reduce the accommodation vergence conflict and so the strain. We found that adding a blur in peripheral vision decreases the visual fatigue but this blur can’t be used actually due to eye-tracker latency.

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Document Type: Research Article

Publication date: 2016-02-14

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  • For more than 30 years, the Electronic Imaging Symposium has been serving those in the broad community - from academia and industry - who work on imaging science and digital technologies. The breadth of the Symposium covers the entire imaging science ecosystem, from capture (sensors, camera) through image processing (image quality, color and appearance) to how we and our surrogate machines see and interpret images. Applications covered include augmented reality, autonomous vehicles, machine vision, data analysis, digital and mobile photography, security, virtual reality, and human vision. IS&T began sole sponsorship of the meeting in 2016. All papers presented at EIs 20+ conferences are open access.

    Please note: For purposes of its Digital Library content, IS&T defines Open Access as papers that will be downloadable in their entirety for free in perpetuity. Copyright restrictions on papers vary; see individual paper for details.

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