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皮质丘脑反馈的功能地形图增强了体感触须/桶状系统中丘脑的空间反应调谐。

Functional topography of corticothalamic feedback enhances thalamic spatial response tuning in the somatosensory whisker/barrel system.

作者信息

Temereanca Simona, Simons Daniel J

机构信息

Department of Neurobiology, University of Pittsburgh, Pittsburgh, PA 15261, USA.

出版信息

Neuron. 2004 Feb 19;41(4):639-51. doi: 10.1016/s0896-6273(04)00046-7.

Abstract

Corticothalamic (CT) projections are approximately 10 times more numerous than thalamocortical projections, yet their function in sensory processing is poorly understood. In particular, the functional significance of the topographic precision of CT feedback is unknown. We addressed these issues in the rodent somatosensory whisker/barrel system by deflecting individual whiskers and pharmacologically enhancing activity in layer VI of single whisker-related cortical columns. Enhancement of corticothalamic activity in a cortical column facilitated whisker-evoked responses in topographically aligned thalamic barreloid neurons, while activation of an adjacent column weakly suppressed activity at the same thalamic site. Both effects were more pronounced when stimulating the preferred, or principal, whisker than for adjacent whiskers. Thus, facilitation by homologous CT feedback sharpens thalamic receptive field focus, while suppression by nonhomologous feedback diminishes it. Our findings demonstrate that somatosensory cortex can selectively regulate thalamic spatial response tuning by engaging topographically specific excitatory and inhibitory mechanisms in the thalamus.

摘要

皮质丘脑(CT)投射的数量大约是丘脑皮质投射的10倍,但人们对其在感觉处理中的功能了解甚少。特别是,CT反馈的地形精度的功能意义尚不清楚。我们通过偏转单个触须并在单个与触须相关的皮质柱的VI层中通过药理学方法增强活动,在啮齿动物体感触须/桶状系统中解决了这些问题。皮质柱中皮质丘脑活动的增强促进了地形对齐的丘脑桶状神经元中触须诱发的反应,而相邻柱的激活则在同一丘脑部位微弱地抑制了活动。当刺激首选或主要触须时,这两种效应都比相邻触须更明显。因此,同源CT反馈的促进作用锐化了丘脑感受野焦点,而非同源反馈的抑制作用则使其减弱。我们的研究结果表明,体感皮层可以通过在丘脑中运用地形特异性的兴奋性和抑制性机制来选择性地调节丘脑的空间反应调谐。

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