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狨猴(Callithrix jacchus)大脑皮层的神经元分布。

Neuronal Distribution Across the Cerebral Cortex of the Marmoset Monkey (Callithrix jacchus).

机构信息

Neuroscience Program, Monash Biomedicine Discovery Institute, 19 Innovation Walk, Clayton, Melbourne, VIC, Australia.

Department of Physiology, Monash University, 26 Innovation Walk, Clayton, Melbourne, VIC, Australia.

出版信息

Cereb Cortex. 2019 Aug 14;29(9):3836-3863. doi: 10.1093/cercor/bhy263.

Abstract

Using stereological analysis of NeuN-stained sections, we investigated neuronal density and number of neurons per column throughout the marmoset cortex. Estimates of mean neuronal density encompassed a greater than 3-fold range, from >150 000 neurons/mm3 in the primary visual cortex to ~50 000 neurons/mm3 in the piriform complex. There was a trend for density to decrease from posterior to anterior cortex, but also local gradients, which resulted in a complex pattern; for example, in frontal, auditory, and somatosensory cortex neuronal density tended to increase towards anterior areas. Anterior cingulate, motor, premotor, insular, and ventral temporal areas were characterized by relatively low neuronal densities. Analysis across the depth of the cortex revealed greater laminar variation of neuronal density in occipital, parietal, and inferior temporal areas, in comparison with other regions. Moreover, differences between areas were more pronounced in the supragranular layers than in infragranular layers. Calculations of the number of neurons per unit column revealed a pattern that was distinct from that of neuronal density, including local peaks in the posterior parietal, superior temporal, precuneate, frontopolar, and temporopolar regions. These results suggest that neuronal distribution in adult cortex result from a complex interaction of developmental/ evolutionary determinants and functional requirements.

摘要

使用 NeuN 染色切片的体视学分析,我们研究了狨猴皮层中神经元的密度和每柱神经元的数量。神经元密度的估计值范围超过 3 倍,从初级视觉皮层的 >150000 个神经元/mm3到梨状皮层复合体的~50000 个神经元/mm3。神经元密度从后向前皮层呈下降趋势,但也存在局部梯度,导致了复杂的模式;例如,在额叶、听觉和体感皮层中,神经元密度倾向于向额前区域增加。扣带前、运动、运动前、岛叶和腹侧颞叶区域的神经元密度相对较低。跨皮层深度的分析显示,与其他区域相比,枕叶、顶叶和下颞叶区域的神经元密度有更大的分层变化。此外,与颗粒下层相比,颗粒上层区域之间的差异更为明显。单位柱神经元数量的计算揭示了一种与神经元密度不同的模式,包括后顶叶、上颞叶、楔前叶、额极和颞极区域的局部峰值。这些结果表明,成年皮层中的神经元分布是由发育/进化决定因素和功能需求的复杂相互作用产生的。

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