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首页> 外文期刊>Vision Research: An International Journal in Visual Science >Binocular summation of second-order global motion signals in human vision
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Binocular summation of second-order global motion signals in human vision

机译:人类视觉中二阶全局运动信号的双目求和

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摘要

Although many studies have examined the principles governing first-order global motion perception, the mechanisms that mediate second-order global motion perception remain unresolved. This study investigated the existence, nature and extent of the binocular advantage for encoding second-order (contrast-defined) global motion. Motion coherence thresholds (79.4% correct) were assessed for determining the direction of radial, rotational and translational second-order motion trajectories as a function of local element modulation depth (contrast) under monocular and binocular viewing conditions. We found a binocular advantage for second-order global motion processing for all motion types. This advantage was mainly one of enhanced modulation sensitivity, rather than of motion-integration. However, compared to findings for first-order motion where the binocular advantage was in the region of a factor of around 1.7 (Hess et al., 2007), the binocular advantage for second-order global motion was marginal, being in the region of around 1.2. This weak enhancement in sensitivity with binocular viewing is considerably less than would be predicted by conventional models of either probability summation or neural summation.
机译:尽管许多研究已经研究了控制一阶全局运动感知的原理,但仍未解决介导二阶全局运动感知的机制。这项研究调查了用于编码二阶(对比度定义)全局运动的双目优势的存在,性质和程度。评估了运动相干性阈值(正确率为79.4%),用于确定在单眼和双眼观察条件下径向,旋转和平移二阶运动轨迹的方向与局部元素调制深度(对比度)的关系。我们发现所有运动类型的二阶全局运动处理都具有双目优势。该优势主要是增强的调制灵敏度之一,而不是运动积分。但是,与一阶运动的双目优势在大约1.7的范围内的发现相比(Hess等,2007),二阶全局运动的双目优势是微不足道的。约1.2。用双目镜观察时灵敏度的这种微弱的提高远小于传统的概率求和或神经求和模型所预期的增强。

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