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首页> 外文期刊>Journal of Light & Visual Environment >Changing Binocular Fusional Area with Retinal Shift in Binocular Vision
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Changing Binocular Fusional Area with Retinal Shift in Binocular Vision

机译:通过双眼视力的视网膜移位改变双眼融合区

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摘要

In three-dimensional display systems, binocular disparity must be limited within a certain area, called as "Panum's fusional area". Otherwise, unsuitable binocular disparity can cause double view or eye fatigue. In this study, we measured the binocular fusional areas in central vision, in the case of peripheral visions of retinal eccentricity of 3 degrees and 6 degrees on horizontal meridian, respectively, using a three-dimensional display. The following results were obtained, (1) in each experiment in central vision, peripheral vision of 3 degrees and 6 degrees, the disparity limit in horizontal meridian is larger than that in vertical meridian; the binocular fusional area is symmetrical about horizontal meridian and is not symmetrical about vertical meridian; the nasalward disparity limits are larger than the temporalward disparity limits; therefore, the form of the binocular fusional area is considered as an ellipse off-centered toward the nasal side on the horizontal meridian. (2) The size of the binocular fusional areas increases with the increase of retinal eccentricity, and the increase of disparity limit on horizontal meridian is faster than that on vertical meridian.
机译:在三维显示系统中,必须将双目视差限制在某个区域内,该区域称为“ Panum融合区”。否则,不合适的双眼视差会导致双视或眼睛疲劳。在这项研究中,我们使用三维显示器测量了中央视力中的双眼融合区域,在水平子午线上视网膜偏心度分别为3度和6度的周边视力的情况下。得到以下结果:(1)在每个实验中,中心视,周围视分别为3度和6度,水平子午线的视差极限大于垂直子午线的视差极限;双眼融合区关于水平子午线对称,关于垂直子午线不对称。鼻向视差极限大于颞向视差极限;因此,双眼融合区域的形式被认为是在水平子午线上偏向鼻侧的椭圆。 (2)双眼融合区的大小随着视网膜偏心率的增加而增加,水平子午线上视差极限的增加快于垂直子午线上。

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