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皮质方向图不同功能域的树突棘形态。

The shape of dendritic arbors in different functional domains of the cortical orientation map.

机构信息

Department of Neuroscience, Medical University of South Carolina, Charleston, South Carolina 29425.

出版信息

J Neurosci. 2014 Feb 26;34(9):3231-6. doi: 10.1523/JNEUROSCI.4985-13.2014.

Abstract

The neocortex is organized into macroscopic functional maps. However, at the microscopic scale, the functional preference and degree of feature selectivity between neighboring neurons can vary considerably. In the primary visual cortex, adjacent neurons in iso-orientation domains share the same orientation preference, whereas neighboring neurons near pinwheel centers are tuned to different stimulus orientations. Moreover, several studies have found greater orientation selectivity in iso-orientation domains than in pinwheel centers. These differences suggest that neurons sample local inputs in a spatially homogenous fashion and independently of the location of their soma on the orientation map. Here we determine whether dendritic geometry is affected by neuronal position on the orientation map. We labeled individual layer 2/3 pyramidal neurons with fluorescent dyes in specific domains of the orientation map in cat primary visual cortex and imaged their dendritic trees in vivo by two-photon microscopy. We found that the circularity and uniformity of dendritic trees is independent of somatic position on the orientation map. Moreover, the dendrites of neurons located close to pinwheel centers extend across all orientation domains in an unbiased fashion. Thus, unbiased dendritic trees appear to provide an anatomical substrate for the systematic variations in feature selectivity across the orientation map.

摘要

新皮质组织成宏观功能图。然而,在微观尺度上,相邻神经元之间的功能偏好和特征选择性的程度可能有很大差异。在初级视觉皮层中,同方向域的相邻神经元具有相同的方向偏好,而在轮辐中心附近的相邻神经元则对不同的刺激方向有调谐。此外,几项研究发现,同方向域的方向选择性大于轮辐中心。这些差异表明,神经元以空间均匀的方式采样局部输入,而与它们在方向图上的体位置无关。在这里,我们确定树突几何形状是否受到神经元在方向图上位置的影响。我们用荧光染料标记猫初级视觉皮层特定方向域中的单个 2/3 层锥体神经元,并通过双光子显微镜在体内对其树突进行成像。我们发现,树突的圆形度和均匀度与方向图上的体位置无关。此外,位于轮辐中心附近的神经元的树突以无偏的方式延伸到所有方向域。因此,无偏的树突似乎为方向图上特征选择性的系统变化提供了一个解剖学基础。

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