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The study of hemispheric specialization for categorical and coordinate spatial relations in animals.

机译:对动物进行分类和协调空间关系的半球专业研究。

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This article reviews some of the most representative studies in the animal literature pertaining to the processing of categorical and coordinate spatial relations and of their hemispheric control. Although the processing of coordinate and categorical cognition has been studied directly with nonhuman primates, experiments on cerebral asymmetries in avian spatial orientation are also reviewed. It turns out that Kosslyn's model concerning the existence of two types of spatial representations each with a specific lateralization pattern has received some support in nonhuman primates and is only weakly verified in the avian studies. Procedural differences might explain some but certainly not all of the discrepancies between the human and the animal literature. It is especially the laterality hypothesis of a left hemisphere advantage in relational cognition and a right hemispheric superiority in judging absolute distances that is not supported by the animal data. Studies specifically addressing Kosslyn's hypotheses and bearing on the use of similar stimuli, procedures and methods between the species tested are needed in order to lead to firm conclusions about the existence of coordinate versus categorical processing systems in animals.
机译:本文回顾了动物文献中有关分类和坐标空间关系的处理及其半球控制的一些最具代表性的研究。尽管已经直接用非人类的灵长类动物研究了坐标和类别认知的处理方法,但也对禽类空间取向的大脑不对称性进行了实验。事实证明,关于两种类型的空间表示形式均存在特定偏侧化模式的柯斯林模型在非人类灵长类动物中得到了一定的支持,并且在鸟类研究中仅得到了较弱的验证。程序上的差异可能解释了人类文学与动物文学之间的某些差异,但并非全部。动物数据不支持在关系认知中左半球优势和在判断绝对距离时右半球优势的偏侧性假设。为了得出关于动物体内协调处理和分类处理系统存在的可靠结论,需要专门针对科斯林假说的研究,并且要在被测物种之间使用相似的刺激,程序和方法。

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