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小鼠听觉皮层功能组织结构的二分法。

Dichotomy of functional organization in the mouse auditory cortex.

机构信息

Department of Biology, University of Maryland, College Park, Maryland, USA.

出版信息

Nat Neurosci. 2010 Mar;13(3):361-8. doi: 10.1038/nn.2490. Epub 2010 Jan 31.

Abstract

The sensory areas of the cerebral cortex possess multiple topographic representations of sensory dimensions. The gradient of frequency selectivity (tonotopy) is the dominant organizational feature in the primary auditory cortex, whereas other feature-based organizations are less well established. We probed the topographic organization of the mouse auditory cortex at the single-cell level using in vivo two-photon Ca(2+) imaging. Tonotopy was present on a large scale but was fractured on a fine scale. Intensity tuning, which is important in level-invariant representation, was observed in individual cells, but was not topographically organized. The presence or near absence of putative subthreshold responses revealed a dichotomy in topographic organization. Inclusion of subthreshold responses revealed a topographic clustering of neurons with similar response properties, whereas such clustering was absent in supra-threshold responses. This dichotomy indicates that groups of nearby neurons with locally shared inputs can perform independent parallel computations in the auditory cortex.

摘要

大脑皮层的感觉区域拥有多种感觉维度的拓扑表示形式。频率选择性(音高拓扑)梯度是初级听觉皮层的主要组织特征,而其他基于特征的组织则不太确定。我们使用体内双光子 Ca(2+)成像在单细胞水平上探测了小鼠听觉皮层的拓扑组织。在较大的尺度上存在音高拓扑,但在较小的尺度上存在断裂。在单个细胞中观察到对强度不变表示很重要的调谐,但没有拓扑组织。潜在的阈下反应的存在或接近不存在揭示了拓扑组织的二分法。包括阈下反应揭示了具有相似反应特性的神经元的拓扑聚类,而在阈上反应中则不存在这种聚类。这种二分法表明,具有局部共享输入的附近神经元组可以在听觉皮层中进行独立的并行计算。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b72a/2866453/464a750e3b16/nihms167825f1.jpg

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