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Relationships between dendritic morphology, spatial distribution and firing patterns in rat layer 1 neurons

机译:大鼠第1层神经元树突形态,空间分布与放电方式之间的关系

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The cortical layer 1 contains mainly small interneurons, which have traditionally been classified according to their axonal morphology. The dendritic morphology of these cells, however, has received little attention and remains ill defined. Very little is known about how the dendritic morphology and spatial distribution of these cells may relate to functional neuronal properties. We used biocytin labeling and whole cell patch clamp recordings, associated with digital reconstruction and quantitative morphological analysis, to assess correlations between dendritic morphology, spatial distribution and membrane properties of rat layer 1 neurons. A total of 106 cells were recorded, labeled and subjected to morphological analysis. Based on the quantitative patterns of their dendritic arbor, cells were divided into four major morphotypes: horizontal, radial, ascendant, and descendant cells. Descendant cells exhibited a highly distinct spatial distribution in relation to other morphotypes, suggesting that they may have a distinct function in these cortical circuits. A significant difference was also found in the distribution of firing patterns between each morphotype and between the neuronal populations of each sublayer. Passive membrane properties were, however, statistically homogeneous among all subgroups. We speculate that the differences observed in active membrane properties might be related to differences in the synaptic input of specific types of afferent fibers and to differences in the computational roles of each morphotype in layer 1 circuits. Our findings provide new insights into dendritic morphology and neuronal spatial distribution in layer 1 circuits, indicating that variations in these properties may be correlated with distinct physiological functions.
机译:皮质层1主要包含小的中间神经元,传统上根据它们的轴突形态对其进行分类。然而,这些细胞的树突形态很少受到关注,仍然不清楚。这些细胞的树突形态和空间分布可能与功能神经元特性之间的关系知之甚少。我们使用了生物素标记和全细胞膜片钳记录,并与数字重建和定量形态学分析相关联,以评估大鼠第1层神经元的树突形态,空间分布和膜特性之间的相关性。记录总共106个细胞,标记并进行形态分析。根据树突状乔木的定量模式,将细胞分为四种主要形态型:水平,放射状,上升和后代细胞。后代细胞相对于其他形态型表现出高度不同的空间分布,表明它们在这些皮层回路中可能具有不同的功能。在每个形态型之间以及每个亚层的神经元群体之间的放电模式分布中也发现了显着差异。然而,在所有亚组中,被动膜的性能在统计学上均一。我们推测,在活性膜特性中观察到的差异可能与特定类型的传入纤维在突触输入中的差异以及在第1层电路中每种形态类型的计算作用的差异有关。我们的发现为第1层回路中的树突形态和神经元空间分布提供了新的见解,表明这些特性的变化可能与独特的生理功能相关。

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