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A Category adjustment approach to memory for spatial location in natural scenes

机译:用于自然场景中空间定位的类别调整记忆方法

摘要

Memories for spatial locations often show systematic errors toward the central value of the surrounding region. This bias has been explained using a Bayesian model in which fine-grained and categorical information are combined (Huttenlocher, Hedges, & Duncan, 1991). However, experiments testing this model have largely used locations contained in simple geometric shapes. Use of this paradigm raises 2 issues. First, do results generalize to the complex natural world? Second, what types of information might be used to segment complex spaces into constituent categories? Experiment 1 addressed the 1st question by showing a bias toward prototypical values in memory for spatial locations in complex natural scenes. Experiment 2 addressed the 2nd question by manipulating the availability of basic visual cues (using color negatives) or of semantic information about the scene (using inverted images). Error patterns suggest that both perceptual and conceptual information are involved in segmentation. The possible neurological foundations of location memory of this kind are discussed.
机译:空间位置的存储器经常显示出对周围区域中心值的系统误差。使用贝叶斯模型解释了这种偏见,其中结合了细粒度和分类信息(Huttenlocher,Hedges和Duncan,1991)。但是,测试此模型的实验大量使用了包含在简单几何形状中的位置。使用此范例会引起两个问题。首先,结果是否可以推广到复杂的自然世界?其次,可以使用什么类型的信息将复杂空间划分为组成类别?实验1通过显示对于复杂自然场景中空间位置的内存中原型值的偏向来解决第一个问题。实验2通过操纵基本视觉提示(使用彩色底片)或有关场景的语义信息(使用倒置图像)的可用性来解决第二个问题。错误模式表明感知和概念信息都与分割有关。讨论了这种位置记忆的可能的神经基础。

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