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首页> 外文期刊>Cerebral cortex >Neurofilament protein and neuronal activity markers define regional architectonic parcellation in the mouse visual cortex.
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Neurofilament protein and neuronal activity markers define regional architectonic parcellation in the mouse visual cortex.

机译:神经丝蛋白和神经元活性标志物定义了小鼠视觉皮层中的区域性建筑碎片。

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This study was designed to assess the chemoarchitectural organization and extent of the mouse visual cortex. We used nonphosphorylated neurofilament protein, a neuronal marker that exhibits region-specific cellular and laminar patterns, to delineate cortical subdivisions. A comprehensive analysis demonstrated that pyramidal and nonpyramidal neurons expressing neurofilament proteins display striking laminar and regional patterns in the mouse visual cortex permitting the delineation of the primary visual cortex (V1) and its monocular and binocular zones, 2 lateral, and 5 medial extrastriate cortical areas with clear anatomical boundaries and providing evidence that the mouse medial extrastriate cortex is not homogeneous. We also investigated the expression profiles of 2 neuronal activity markers, the immediate early genes c-fos and zif-268, following deprivation paradigms to ascertain the visual nature of all subdivisions caudal, medial, and lateral to V1. The present data indicate that neurochemically identifiable subdivisions of the mouse visual cortex exist laterally and medially to V1 and reveal specific anatomical and functional characteristics at the cellular and regional levels.
机译:本研究旨在评估小鼠视觉皮层的化学结构组织和范围。我们使用非磷酸化的神经丝蛋白(一种显示区域特异性细胞和层状模式的神经元标记)来描绘皮层细分。全面的分析表明,表达神经丝蛋白的锥体和非锥体神经元在小鼠视觉皮层中表现出惊人的层状和区域模式,从而可以描绘出初级视觉皮层(V1)及其单眼和双眼区,2个外侧和5个内侧外侧纹状皮层区域具有清晰的解剖边界,并提供证据表明小鼠内侧的纹状体皮质不均匀。我们还研究了剥夺范式后,确定2个神经元活动标记物(即早期早期基因c-fos和zif-268)的表达谱,以确定V1尾部,内侧和外侧所有细分的视觉性质。目前的数据表明,小鼠视觉皮层的神经化学可识别的细分存在于V1的侧面和内侧,并且在细胞和区域水平上揭示了特定的解剖学和功能特征。

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