Département de Biologie Cellulaire et de Morphologie, University of Lausanne, Lausanne, Switzerland.
Eur J Neurosci. 2012 Mar;35(6):855-69. doi: 10.1111/j.1460-9568.2012.08011.x. Epub 2012 Feb 22.
In mice, barrels in layer IV of the somatosensory cortex correspond to the columnar representations of whisker follicles. In barrelless (BRL) mice, barrels are absent, but functionally, a columnar organization persists. Previously we characterized the aberrant geometry of thalamic projection of BRL mice using axonal reconstructions of individual neurons. Here we proceeded with the analysis of the intracortical projections from layer VI pyramidal neurons, to assess their contribution to the columnar organization. From series of tangential sections we reconstructed the axon collaterals of individual layer VI pyramidal neurons in the C2 barrel column that were labelled with biocytin [controls from normal (NOR) strain, 19 cells; BRL strain, nine cells]. Using six morphological parameters in a cluster analysis, we showed that layer VI neurons in NOR mice are distributed into four clusters distinguished by the radial and tangential extent of their intracortical projections. These clusters correlated with the cortical or subcortical projection of the main axon. In BRL mice, neurons were distributed within the same four clusters, but their projections to the granular and supragranular layers were significantly smaller and their tangential projection was less columnar than in NOR mice. However, in both strains the intracortical projections had a preference for the appropriate barrel column (C2), indicating that layer VI pyramidal cells could participate in the functional columnar organization of the barrel cortex. Correlative light and electron microscopy analyses provided morphometric data on the intracortical synaptic boutons and synapses of layer VI pyramidal neurons and revealed that projections to layer IV preferentially target excitatory dendritic spines and shafts.
在小鼠中,体感皮层 IV 层的桶状结构对应于胡须滤泡的柱状表示。在无桶状结构(BRL)小鼠中,桶状结构缺失,但功能上,柱状结构仍然存在。此前,我们使用单个神经元的轴突重建来描述 BRL 小鼠丘脑投射的异常几何形状。在这里,我们继续分析来自 VI 层锥体神经元的皮质内投射,以评估它们对柱状结构的贡献。从一系列切向切片中,我们重建了在 C2 桶状柱中用生物胞素标记的单个 VI 层锥体神经元的轴突侧支[对照来自正常(NOR)品系,19 个细胞;BRL 品系,9 个细胞]。在聚类分析中使用六个形态参数,我们表明 NOR 小鼠中的 VI 层神经元分布在四个簇中,其特征是其皮质内投射的径向和切向范围。这些簇与主轴突的皮质或皮质下投射相关。在 BRL 小鼠中,神经元分布在相同的四个簇中,但它们到颗粒层和超颗粒层的投射明显较小,其切向投射比 NOR 小鼠的更不柱状。然而,在两种品系中,皮质内投射都优先于适当的桶状柱(C2),表明 VI 层锥体细胞可以参与桶状皮层的功能柱状组织。相关的光镜和电镜分析提供了 VI 层锥体神经元皮质内突触小泡和突触的形态计量学数据,并表明到 IV 层的投射优先靶向兴奋性树突棘和轴突。