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Statistical decision theory to relate neurons to behavior in the study of covert visual attention.在隐蔽视觉注意研究中,运用统计决策理论将神经元与行为联系起来。
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Set-size effects for identification versus localization depend on the visual search task.识别与定位的集合大小效应取决于视觉搜索任务。
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分散注意力会限制对三维物体形状的感知。

Divided attention limits perception of 3-D object shapes.

作者信息

Scharff Alec, Palmer John, Moore Cathleen M

机构信息

Department of Psychology, University of Washington, Seattle, WA, USA.

出版信息

J Vis. 2013 Feb 12;13(2):18. doi: 10.1167/13.2.18.

DOI:10.1167/13.2.18
PMID:23404158
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5833208/
Abstract

Can one perceive multiple object shapes at once? We tested two benchmark models of object shape perception under divided attention: an unlimited-capacity and a fixed-capacity model. Under unlimited-capacity models, shapes are analyzed independently and in parallel. Under fixed-capacity models, shapes are processed at a fixed rate (as in a serial model). To distinguish these models, we compared conditions in which observers were presented with simultaneous or sequential presentations of a fixed number of objects (The extended simultaneous-sequential method: Scharff, Palmer, & Moore, 2011a, 2011b). We used novel physical objects as stimuli, minimizing the role of semantic categorization in the task. Observers searched for a specific object among similar objects. We ensured that non-shape stimulus properties such as color and texture could not be used to complete the task. Unpredictable viewing angles were used to preclude image-matching strategies. The results rejected unlimited-capacity models for object shape perception and were consistent with the predictions of a fixed-capacity model. In contrast, a task that required observers to recognize 2-D shapes with predictable viewing angles yielded an unlimited capacity result. Further experiments ruled out alternative explanations for the capacity limit, leading us to conclude that there is a fixed-capacity limit on the ability to perceive 3-D object shapes.

摘要

人能同时感知多个物体形状吗?我们在注意力分散的情况下测试了两种物体形状感知的基准模型:一种是无容量限制模型,另一种是固定容量模型。在无容量限制模型中,形状是独立且并行分析的。在固定容量模型中,形状以固定速率进行处理(如串行模型)。为了区分这些模型,我们比较了观察者面对固定数量物体的同时呈现或顺序呈现的情况(扩展的同时 - 顺序方法:Scharff、Palmer和Moore,2011a,2011b)。我们使用新颖的物理物体作为刺激,尽量减少语义分类在任务中的作用。观察者在相似物体中搜索特定物体。我们确保颜色和纹理等非形状刺激属性不能用于完成任务。使用不可预测的视角来排除图像匹配策略。结果否定了物体形状感知的无容量限制模型,并且与固定容量模型的预测一致。相比之下,一项要求观察者以可预测视角识别二维形状的任务产生了无容量限制的结果。进一步的实验排除了对容量限制的其他解释,使我们得出结论,感知三维物体形状的能力存在固定的容量限制。