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Binocular rivalry of spiral and linear moving random dot patterns in human observers

机译:人类观察者中螺旋和线性移动随机点图案的双目竞争

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Abstract Abstract: Abstract?? Binocular rivalry describes the alternating perception of two competing monocular images. It is hypothesized to arise at multiple levels of the visual pathway due to competition between neuronal populations representing the displayed images. We tested whether an enhanced neural representation of expanding motion yields a bias over other spiral motion (i.e., contraction and rotation) and linear motion stimuli during binocular rivalry. We presented random dot patterns of different motion types (i.e., linear and spiral), matched in contrast and speed, to human subjects through a mirror stereoscope. During spiral rivalry, expansion rivalry periods dominated over those of contraction and rotation, and contraction dominated over rotation. During linear motion rivalry, up, down, left, and right directions had similar rivalry periods. All spiral motions dominated over linear motions. Interestingly, when these motion types rivaled against each other, the rivalry periods of spiral motion slightly decreased while those of linear motion significantly increased. This rivalry also caused the bias for expansion relative to other spirals to disappear. Our results suggest a correlation between neuronal representations of different moving patterns and their perception during binocular motion rivalry and provide further evidence that rivalry periods are constrained by the ecologic relevance of stimuli.
机译:摘要摘要:摘要?双眼竞争描述了两个相互竞争的单眼图像的交替感知。假设由于代表所显示图像的神经元群体之间的竞争而在视觉通路的多个级别出现。我们测试了在双眼竞争中,增强的扩展运动表示的神经表示是否会比其他螺旋运动(即收缩和旋转)和线性运动刺激产生偏倚。我们通过镜子立体镜向人类对象展示了对比度和速度匹配的不同运动类型(即线性和螺旋形)的随机点图案。在螺旋式竞争中,扩张竞争时期主导于收缩和轮换时期,而收缩主导于轮换。在直线运动对抗中,向上,向下,向左和向右方向具有相似的对抗期。所有螺旋运动都超过线性运动。有趣的是,当这些运动类型相互竞争时,螺旋运动的竞争周期略有减少,而线性运动的竞争周期则显着增加。这种竞争也使相对于其他螺旋形扩张的偏见消失了。我们的研究结果表明不同运动方式的神经元表示与他们在双眼运动竞赛中的感知之间的相关性,并提供了进一步的证据表明竞赛期受刺激的生态相关性约束。

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