Ahmed B, Anderson J C, Martin K A, Nelson J C
Institute of Neuroinformatics, University of Zürich, Switzerland.
J Comp Neurol. 1997 Apr 7;380(2):230-42.
The pattern of excitatory and inhibitory inputs to the inhibitory neurons is largely unknown. We have set out to quantify the major excitatory and inhibitory inputs to layer 4 basket cells from the primary visual cortex of the cat. The synapses formed with the soma, and proximal and distal dendrites, were examined at the light and electron microscopic levels in four basket cells, recorded in vivo and filled with horseradish peroxidase. The major afferents of layer 4 have been well characterised, both at the light and electron microscopic levels. The sizes of the synaptic boutons of the major excitatory inputs to layer 4 from the thalamic relay cells, spiny stellate cells, and layer 6 pyramidal neurons are statistically different. Their distributions were compared to those of the boutons forming asymmetric contacts onto the basket cells, which were assumed to be provided by the same set of excitatory afferents. The best-fit results showed that about equal numbers of synapses were provided by the layer 6 pyramids (43%) and the spiny stellates (44%), whereas the thalamic afferents contributed only 13%. A similar analysis on the symmetric synaptic input to the basket cells indicated that as much as 79% of the symmetric synapses could have originated from layer 4 basket cells. Thalamic and spiny stellate synapses were preferentially located on the soma and proximal dendrites, regions that also had 76% of all the symmetric contracts.
抑制性神经元的兴奋性和抑制性输入模式在很大程度上尚不清楚。我们已着手量化来自猫初级视觉皮层第4层篮状细胞的主要兴奋性和抑制性输入。在体内记录并用辣根过氧化物酶填充的4个篮状细胞中,在光学和电子显微镜水平检查了与胞体以及近端和远端树突形成的突触。第4层的主要传入神经在光学和电子显微镜水平上都已得到很好的表征。来自丘脑中继细胞、棘状星状细胞和第6层锥体神经元的第4层主要兴奋性输入的突触小体大小在统计学上存在差异。将它们的分布与在篮状细胞上形成不对称接触的突触小体的分布进行比较,这些突触小体被认为是由同一组兴奋性传入神经提供的。最佳拟合结果表明,第6层锥体神经元(43%)和棘状星状细胞(44%)提供的突触数量大致相等,而丘脑传入神经仅占13%。对篮状细胞对称突触输入的类似分析表明,多达79%的对称突触可能起源于第4层篮状细胞。丘脑和棘状星状突触优先位于胞体和近端树突上,这些区域也占所有对称突触的76%。