首页> 外文期刊>The Journal of Comparative Neurology >Quantitative Golgi study of the rat cerebellar molecular layer interneurons using principal component analysis.
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Quantitative Golgi study of the rat cerebellar molecular layer interneurons using principal component analysis.

机译:使用主成分分析对大鼠小脑分子层间神经元进行高尔基定量研究。

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In this study, we applied for the first time a multivariate analysis to describe the anatomy of cerebellar molecular layer interneurons. Forty variables extending over a variety of morphological features (geometrical, topological, and metrical) were obtained from a three-dimensional reconstruction of 26 rat rapid Golgi-stained neurons. The subsequent principal component analysis showed that the first principal component was strongly correlated with variables related to the depth of each cell's soma in the molecular layer. The second principal component was strongly correlated with parameters describing axonal morphology. Finally, an analysis of the distribution of these anatomical features suggested that these cells cannot be classified into distinct groups but, instead, represent one continuously varying population. Thus, the classical division of molecular layer neurons into deep basket cells and superficial stellate cells is not supported by our analysis. These results have important implications for the development of the cerebellar cortex as well as for the expected patterns of Purkinje cell activity following activation of the granule cell layer.
机译:在这项研究中,我们首次应用多元分析来描述小脑分子层间神经元的解剖结构。从26个大鼠快速高尔基染色的神经元的三维重建中获得了40个变量,这些变量遍及各种形态特征(几何,拓扑和度量)。随后的主成分分析表明,第一个主成分与与分子层中每个细胞的体细胞深度有关的变量密切相关。第二个主要成分与描述轴突形态的参数密切相关。最后,对这些解剖特征的分布的分析表明,这些细胞不能分类为不同的组,而是代表一个连续变化的种群。因此,我们的分析不支持将分子层神经元经典分为深篮细胞和浅星状细胞。这些结果对小脑皮质的发展以及颗粒细胞层活化后浦肯野细胞活性的预期模式具有重要意义。

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