首页> 美国卫生研究院文献>The Journal of Physiology >The relationship of receptive field properties to the dendritic shape of neurones in the cat striate cortex.
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The relationship of receptive field properties to the dendritic shape of neurones in the cat striate cortex.

机译:猫纹状皮层中感受野特性与神经元树突形状的关系。

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摘要

In this study, we examined the hypothesis that some features of the receptive fields of cortical neurones are determined by the extent to which their dendrites can sample from different parts of the visual field representation on the cortex. In particular, the orientation selectivity and size of the receptive fields of cortical neurones were examined for their relationship to the tangential organization of the dendrites of cortical neurones. Single neurones in the visual cortex of anaesthetized and paralysed cats were physiologically characterized and injected intracellularly with horseradish peroxidase (HRP). In some cases it was possible to identify whether the neurones received direct (monosynaptic) or indirect (polysynaptic) input from afferents of the lateral geniculate nucleus. The dendritic arborizations of the HRP-filled cells, sampled from all layers, were reconstructed in three dimensions with computer assistance, and rotated to give the tangential or surface view. The bias in the tangential arrangement of the dendrites was determined by calculating the mean vector angle for the distribution of the dendrites of each cell. This bias was related to the orientation selectivity of the neurones. There was no consistent relationship between orientation selectivity and the tangential bias of the dendritic tree. The width of the receptive fields was compared to the equivalent 'width' of the tangential extent of the dendrites. There was no significant relationship between the two widths. The tangential arrangement of the dendritic field does not appear to be important in determining the orientation selectivity or the size of the receptive fields of neurones in the cat visual cortex. The former feature of the receptive fields may be determined by inhibitory processes, while the extent and number of the afferents providing input to a single neurone may determine the latter property.
机译:在这项研究中,我们检查了以下假设:皮质神经元的感受野的某些特征取决于它们的树突可以从皮质上的视野表示的不同部分进行采样的程度来确定。特别地,检查了皮质神经元的定向选择性和感受野的大小与皮质神经元的树突的切向组织的关系。麻醉和瘫痪猫的视觉皮层中的单个神经元具有生理学特征,并向细胞内注射辣根过氧化物酶(HRP)。在某些情况下,可以确定神经元是从外侧膝状核的传入神经接收直接输入(单突触)还是间接输入(多突触)。从所有层中取样的HRP填充细胞的树突状乔木在计算机辅助下在三个维度上重建,并旋转以提供切线或表面视图。通过计算每个单元的树枝状分布的平均矢量角来确定树枝状的切线排列中的偏差。该偏差与神经元的方向选择性有关。定向选择性与树状树的切向偏差之间没有一致的关系。将感受野的宽度与树突切向范围的等效“宽度”进行比较。两种宽度之间没有显着关系。树突场的切向排列对于确定猫视皮层中神经元的方向选择性或神经元感受野的大小似乎并不重要。感受野的前者特征可以通过抑制过程来确定,而向单个神经元提供输入的传入神经的程度和数量可以决定后者的性质。

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