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大鼠外侧纹外皮层以及初级视皮层深层而非浅层的神经可辨别性与形状可辨别性相关。

Neural discriminability in rat lateral extrastriate cortex and deep but not superficial primary visual cortex correlates with shape discriminability.

作者信息

Vermaercke Ben, Van den Bergh Gert, Gerich Florian, Op de Beeck Hans

机构信息

Laboratory of Biological Psychology, Psychology and Educational Sciences, KU Leuven Leuven, Belgium ; Department for Molecular and Cellular Biology, Center for Brain Science, Harvard University Cambridge, MA, USA.

Laboratory of Biological Psychology, Psychology and Educational Sciences, KU Leuven Leuven, Belgium.

出版信息

Front Neural Circuits. 2015 May 20;9:24. doi: 10.3389/fncir.2015.00024. eCollection 2015.

Abstract

Recent studies have revealed a surprising degree of functional specialization in rodent visual cortex. It is unknown to what degree this functional organization is related to the well-known hierarchical organization of the visual system in primates. We designed a study in rats that targets one of the hallmarks of the hierarchical object vision pathway in primates: selectivity for behaviorally relevant dimensions. We compared behavioral performance in a visual water maze with neural discriminability in five visual cortical areas. We tested behavioral discrimination in two independent batches of six rats using six pairs of shapes used previously to probe shape selectivity in monkey cortex (Lehky and Sereno, 2007). The relative difficulty (error rate) of shape pairs was strongly correlated between the two batches, indicating that some shape pairs were more difficult to discriminate than others. Then, we recorded in naive rats from five visual areas from primary visual cortex (V1) over areas LM, LI, LL, up to lateral occipito-temporal cortex (TO). Shape selectivity in the upper layers of V1, where the information enters cortex, correlated mostly with physical stimulus dissimilarity and not with behavioral performance. In contrast, neural discriminability in lower layers of all areas was strongly correlated with behavioral performance. These findings, in combination with the results from Vermaercke et al. (2014b), suggest that the functional specialization in rodent lateral visual cortex reflects a processing hierarchy resulting in the emergence of complex selectivity that is related to behaviorally relevant stimulus differences.

摘要

最近的研究揭示了啮齿动物视觉皮层中惊人程度的功能特化。目前尚不清楚这种功能组织在多大程度上与灵长类动物视觉系统中众所周知的层级组织相关。我们在大鼠中设计了一项研究,该研究针对灵长类动物层级物体视觉通路的一个标志:对行为相关维度的选择性。我们将视觉水迷宫中的行为表现与五个视觉皮层区域的神经辨别能力进行了比较。我们使用先前用于探测猴皮层形状选择性的六对形状,在两批独立的六只大鼠中测试了行为辨别能力(Lehky和Sereno,2007)。两批实验中形状对的相对难度(错误率)高度相关,这表明有些形状对比其他形状对更难辨别。然后,我们在未受过训练的大鼠中,从初级视觉皮层(V1)的五个视觉区域记录到LM、LI、LL区域,直至枕颞外侧皮层(TO)。信息进入皮层的V1上层的形状选择性,大多与物理刺激的差异相关,而与行为表现无关。相比之下,所有区域下层的神经辨别能力与行为表现高度相关。这些发现,结合Vermaercke等人(2014b)的结果,表明啮齿动物外侧视觉皮层的功能特化反映了一种加工层级,这种层级导致了与行为相关刺激差异相关的复杂选择性的出现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da98/4438227/0d67ee1b8747/fncir-09-00024-g0001.jpg

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