首页> 外文期刊>The Journal of Comparative Neurology >Septal columns in rodent barrel cortex: Functional circuits for modulating whisking behavior.
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Septal columns in rodent barrel cortex: Functional circuits for modulating whisking behavior.

机译:啮齿类动物的大脑皮层中的隔柱:用于调节搅拌行为的功能电路。

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In rodents, each mystacial whisker is represented in the granular layer of primary somatosensory (SI) cortex by a compact cluster of cells known as a barrel, and barrels are separated from each other by domains that are called septa. Vertical columns of neurons aligned with each barrel act as a functional assembly to process information from a "principal" whisker, but a functional role has not been identified for vertical columns of neurons that are aligned with the septa. To determine whether these septal columns provide the main source of projections to primary motor (MI) cortex, we placed retrograde tracers in MI cortex and analyzed the location of the retrogradely labeled neurons with respect to the septal and barrel compartments of SI barrel cortex. In cases in which SI barrel cortex was sectioned tangentially, retrogradely labeled neurons in the extragranular layers of SI were plotted and superimposed onto reconstructions of the layer IV barrel field. In each of these cases, most labeled neurons were located above or below the septal regions of layer IV. When SI barrel cortex was sectioned coronally, we observed multiple columns of labeled SI neurons that were vertically aligned with the septal zones of layer IV. These results indicate that columns of neurons that are vertically aligned with the septa, or septal columns, are functionally linked by virtue of their projections to MI cortex. We hypothesize that these septal columns represent an interconnected and functionally distinct circuit that transmits information to MI and other brain regions involved in motor control. J. Comp. Neurol. 480:299-309, 2004. (c) 2004 Wiley-Liss, Inc.
机译:在啮齿动物中,每一个神秘的晶须都通过称为桶的紧密细胞簇在初级体感(SI)皮质的颗粒层中表示,桶之间通过称为隔片的域彼此隔开。与每个枪管对齐的神经元的垂直列用作处理来自“主”晶须的信息的功能组件,但是尚未确定与隔垫对齐的神经元的垂直列的功能角色。为了确定这些间隔柱是否为主要运动(MI)皮质提供了主要的投射来源,我们在MI皮质中放置了逆行示踪剂,并分析了相对于SI桶皮质的间隔和桶隔室的逆行标记神经元的位置。在对SI桶皮层进行切向剖切的情况下,绘制SI颗粒外层中逆行标记的神经元,并将其叠加在IV桶形视野的重建上。在每种情况下,大多数标记的神经元都位于第IV层的间隔区上方或下方。当将SI桶状皮质冠状切开时,我们观察到多列带标记的SI神经元,它们与IV层的间隔区垂直对齐。这些结果表明,与隔垫垂直排列的神经元列或隔垫列由于其与MI皮质的投影而在功能上相连。我们假设这些间隔柱代表了一个相互连接且功能不同的电路,该电路将信息传输到MI和参与运动控制的其他大脑区域。 J.比较神经元。 480:299-309,2004.(c)2004 Wiley-Liss,Inc.

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