首页> 外文OA文献 >Cortical integration in the visual system of the macaque monkey: large-scale morphological differences in the pyramidal neurons in the occipital, parietal and temporal lobes.
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Cortical integration in the visual system of the macaque monkey: large-scale morphological differences in the pyramidal neurons in the occipital, parietal and temporal lobes.

机译:猕猴视觉系统中的皮质整合:枕叶,顶叶和颞叶中锥体神经元的大规模形态差异。

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摘要

Layer III pyramidal neurons were injected with Lucifer yellow in tangential cortical slices taken from the inferior temporal cortex (area TE) and the superior temporal polysensory (STP) area of the macaque monkey. Basal dendritic field areas of layer III pyramidal neurons in area STP are significantly larger, and their dendritic arborizations more complex, than those of cells in area TE. Moreover, the dendritic fields of layer III pyramidal neurons in both STP and TE are many times larger and more complex than those in areas forming 'lower' stages in cortical visual processing, such as the first (V1), second (V2), fourth (V4) and middle temporal (MT) visual areas. By combining data on spine density with those of Sholl analyses, we were able to estimate the average number of spines in the basal dendritic field of layer III pyramidal neurons in each area. These calculations revealed a 13-fold difference in the number of spines in the basal dendritic field between areas STP and V1 in animals of similar age. The large differences in complexity of the same kind of neuron in different visual areas go against arguments for isopotentiality of different cortical regions and provide a basis that allows pyramidal neurons in temporal areas TE and STP to integrate more inputs than neurons in more caudal visual areas.
机译:在猕猴的下颞皮质(区域TE)和颞上感官(STP)区域的切向皮质切片中,向III层锥体神经元注射路西法黄。与TE区的细胞相比,STP区的III层锥体神经元的基础树突场区域显着更大,并且它们的树突乔化更为复杂。此外,STP和TE中第III层锥体神经元的树突场比皮层视觉处理中形成“较低”阶段的区域(例如第一(V1),第二(V2),第四(V4)和中颞(MT)视觉区域。通过将有关脊柱密度的数据与Sholl分析的数据相结合,我们能够估算出每个区域中第III层锥体神经元基底树突场的平均棘突数。这些计算表明,在相似年龄的动物中,STP和V1区域之间的基础树突区域中的棘突数目相差13倍。在不同视觉区域中相同种类的神经元在复杂性上的巨大差异与不同皮层区域等电位性的争论背道而驰,并提供了一个基础,使颞叶区域TE和STP中的锥体神经元能够比更多尾部视觉区域中的神经元整合更多的输入。

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