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首页> 外文期刊>Vision Research: An International Journal in Visual Science >Psychophysical evidence for contraction of the range of spatial integration as a mechanism for filtering out spatial noise in a random dot motion display.
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Psychophysical evidence for contraction of the range of spatial integration as a mechanism for filtering out spatial noise in a random dot motion display.

机译:缩小空间整合范围的心理物理学证据,以此作为滤除随机点运动显示中的空间噪声的机制。

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摘要

Human judgment is frequently impaired by distracters extending across our field of view. How we extract relevant information from a spatially restricted region in a complex scene in spite of this impairment is an important issue in vision. Recently, it has been shown that this impairment can be reduced by increasing the number of surrounding distracters without changing the density, thus increasing the total area covered by the distracters. Little, however, is known regarding the underlying mechanism(s). Here, we tested the hypothesis that visual impairment by distracters is due to integration of irrelevant information across space, and that further addition of distracters produces contraction of the spatial integration field. Human subjects were instructed to judge the direction of motion within a center disk and to ignore motion noise in the surrounding annulus in a random dot kinematogram. We observed a non-monotonic effect of the size of the annulus, in which the subjects' discrimination thresholds at first increased, and then decreased as the size of the annulus became larger. We further investigated how weak coherent motion in the surrounding annulus interferes with the subjects' performance. Importantly, we found that the amount of interference decreases with the addition of surrounding motion noise, consistent with the hypothesis that the addition of distracters produces contraction of the range of spatial integration. Our results suggest that integration within a visual receptive field causes impairment by distracters across our visual field, and that contraction of the range of integration can counteract this impairment.
机译:分散在我们视野范围内的干扰因素常常会削弱人类的判断力。尽管存在这种缺陷,我们如何从复杂场景中空间受限的区域中提取相关信息仍然是视觉中的重要问题。最近,已经显示出可以通过增加周围的分散器的数量而不改变密度来减少这种损害,从而增加分散器覆盖的总面积。然而,关于底层机制知之甚少。在这里,我们测试了以下假说:干扰物的视觉障碍是由于空间中无关信息的整合所致,并且干扰物的进一步添加会导致空间整合场的收缩。指示人类受试者判断中心圆盘内的运动方向,并忽略随机点运动图中的周围环空中的运动噪声。我们观察到环面大小的非单调效应,其中对象的辨别阈值首先增大,然后随着环面大小的增大而减小。我们进一步研究了周围环隙中微弱的连贯运动如何干扰受试者的表现。重要的是,我们发现干扰量随周围运动噪声的增加而减少,这与以下假设有关:添加干扰物会导致空间积分范围的缩小。我们的研究结果表明,视觉接受区域内的整合会导致整个视野中的干扰物受损,并且整合范围的缩小可以抵消这种损害。

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