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听觉皮层中“什么”与“哪里”加工的双重分离

Double dissociation of 'what' and 'where' processing in auditory cortex.

作者信息

Lomber Stephen G, Malhotra Shveta

机构信息

Centre for Brain and Mind, Department of Physiology and Pharmacology, Schulich School of Medicine and Dentistry, University of Western Ontario, Middlesex Road, London, Ontario N6A 5K8, Canada.

出版信息

Nat Neurosci. 2008 May;11(5):609-16. doi: 10.1038/nn.2108. Epub 2008 Apr 13.

Abstract

Studies of cortical connections or neuronal function in different cerebral areas support the hypothesis that parallel cortical processing streams, similar to those identified in visual cortex, may exist in the auditory system. However, this model has not yet been behaviorally tested. We used reversible cooling deactivation to investigate whether the individual regions in cat nonprimary auditory cortex that are responsible for processing the pattern of an acoustic stimulus or localizing a sound in space could be doubly dissociated in the same animal. We found that bilateral deactivation of the posterior auditory field resulted in deficits in a sound-localization task, whereas bilateral deactivation of the anterior auditory field resulted in deficits in a pattern-discrimination task, but not vice versa. These findings support a model of cortical organization that proposes that identifying an acoustic stimulus ('what') and its spatial location ('where') are processed in separate streams in auditory cortex.

摘要

对不同脑区皮质连接或神经元功能的研究支持这样一种假说,即类似于在视觉皮质中所发现的,听觉系统中可能存在并行的皮质处理流。然而,该模型尚未经过行为学测试。我们使用可逆性冷却失活方法来研究猫非初级听觉皮质中负责处理声音刺激模式或在空间中定位声音的各个区域是否能在同一只动物中实现双重分离。我们发现,双侧失活后听觉场会导致声音定位任务出现缺陷,而双侧失活前听觉场会导致模式辨别任务出现缺陷,但反之则不然。这些发现支持了一种皮质组织模型,该模型提出,识别声音刺激(“是什么”)及其空间位置(“在哪里”)是在听觉皮质的不同处理流中进行的。

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