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首页> 外文期刊>Cerebral cortex >A study of pyramidal cell structure in the cingulate cortex of the macaque monkey with comparative notes on inferotemporal and primary visual cortex.
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A study of pyramidal cell structure in the cingulate cortex of the macaque monkey with comparative notes on inferotemporal and primary visual cortex.

机译:对猕猴的扣带状皮质中的锥体细胞结构进行研究,并比较下颞叶和初级视觉皮层。

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Recent studies have revealed a marked degree of variation in the pyramidal cell phenotype in visual, somatosensory, motor and prefrontal cortical areas in the brain of different primates, which are believed to subserve specialized cortical function. In the present study we carried out comparisons of dendritic structure of layer III pyramidal cells in the anterior and posterior cingulate cortex and compared their structure with those sampled from inferotemporal cortex (IT) and the primary visual area (V1) in macaque monkeys. Cells were injected with Lucifer Yellow in flat-mounted cortical slices, and processed for a light-stable DAB reaction product. Size, branching pattern, and spine density of basal dendritic arbors was determined, and somal areas measured. We found that pyramidal cells in anterior cingulate cortex were more branched and more spinous than those in posterior cingulate cortex, and cells in both anterior and posterior cingulate were considerably larger, more branched, and more spinous than those in area V1. These data show that pyramidal cell structure differs between posterior dysgranular and anterior granular cingulate cortex, and that pyramidal neurons in cingulate cortex have different structure to those in many other cortical areas. These results provide further evidence for a parallel between structural and functional specialization in cortex.
机译:最近的研究表明,在不同灵长类动物的大脑的视觉,体感,运动和前额叶皮层区域中,锥体细胞表型的变化程度明显,据信这些亚基可以满足特定的皮层功能。在本研究中,我们比较了前扣带回皮层和后扣带回皮层中第III层锥体细胞的树突结构,并将它们的结构与猕猴的颞下皮质(IT)和主要视觉区域(V1)进行了比较。向细胞注入平面安装的皮质切片中的路西法黄,并加工成光稳定的DAB反应产物。确定了基底树突状乔木的大小,分支模式和脊柱密度,并测量了体区。我们发现前扣带回皮层中的锥体细胞比后扣带状皮层中的细胞更分支和更多棘,并且前扣带和后扣带中的细胞都比V1区中的细胞更大,更分支和更具棘突。这些数据表明,后部不规则颗粒和前颗粒状扣带皮层之间的锥体细胞结构不同,扣带皮层中的锥体神经元与许多其他皮质区域的锥体细胞结构不同。这些结果为皮质的结构和功能专业化之间的平行提供了进一步的证据。

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