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Computing an Average When Part of the Population Is Not Perceived

机译:当部分人口未被感知时计算平均值

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The syndrome of unilateral spatial neglect (USN) after right-hemisphere damage is characterized by failure of salient left-sided stimuli to activate an orienting response, attract attention, and gain access to conscious awareness. The explicit failure processing left-sided visual information is not uniform, however, and patients seem to be more successful performing certain visual tasks than others. The source of this difference is still not clear. We focus on processing of visual scene statistical properties, asking whether, in computing the average size of an array of objects, USN patients give appropriate weight to objects on the left; disregard left-side objects entirely; or assign them an intermediate, lower weight, in accord with their tendency to neglect these objects. The interest in testing this question stems from a series of studies in healthy individuals that led Chong and Treisman [Chong, S. C., & Treisman, A. Statistical processing: Computing the average size in perceptual groups. 891–900, 2005a; Chong, S. C., & Treisman, A. Attentional spread in the statistical processing of visual displays. 1–13, 2005b] to propose that processing of statistical properties (like the average size of visual scene elements) is carried out in parallel, with no need for serial allocation of focal attention to the different scene elements. Our results corroborate this suggestion, showing that objects in the left (“neglected”) hemispace contribute to average size computation, despite a marked imbalance in spatial distribution of attention, which leads to a reduced weight of left-side elements in the averaging computation. This finding sheds light on the nature of the impairment in USN and on basic mechanisms underlying statistical processing in vision. We confirm that statistical processing depends mainly on spread-attention mechanisms,- which are largely spared in USN.
机译:右半球受损后的单侧空间忽视综合症(USN)的特征在于明显的左侧刺激无法激活定向反应,引起注意并获得意识意识。但是,显式故障处理左侧的视觉信息并不统一,并且患者似乎在执行某些视觉任务上比其他任务更为成功。这种差异的根源仍不清楚。我们专注于视觉场景统计属性的处理,询问在计算对象阵列的平均大小时,USN患者是否对左侧的对象给予适当的权重?完全忽略左侧物体;或根据他们忽略这些物体的趋势,为他们分配一个较低的中间重量。测试这个问题的兴趣来自对Chong和Treisman进行的一系列健康个体研究[Chong,S. C.和Treisman,A.统计处理:计算感知群体的平均大小。 891-900,2005a; Chong,S. C.和Treisman,A.视觉显示的统计处理中的注意传播。 [1-13,2005b]建议并行处理统计属性(如视觉场景元素的平均大小),而无需将注意力集中到不同场景元素上。我们的结果证实了这一建议,表明尽管注意力的空间分布明显不平衡,但左侧(“被忽略”)半空间中的对象仍有助于平均大小的计算,这导致平均计算中左侧元素的权重降低。这一发现揭示了USN损伤的性质以及视觉统计处理基础的基本机制。我们确认统计处理主要依赖于传播注意机制,而后者在USN中得到了很大的保留。

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