McGuire B A, Hornung J P, Gilbert C D, Wiesel T N
J Neurosci. 1984 Dec;4(12):3021-33. doi: 10.1523/JNEUROSCI.04-12-03021.1984.
Although cells in layer 4 of cat striate cortex represent the first stage in the cortical processing of visual information, they have considerably more complicated receptive field properties than the afferents to the layer from the lateral geniculate nucleus. In considering how these properties are generated, we have focused on the intrinsic cortical circuitry, and particularly on the projection to layer 4 from layer 6. Layer 6 pyramidal cells were injected with horseradish peroxidase and examined at the light and electron microscopic level. The labeled axon terminals were found to form asymmetric synapses and to show a strong preference for contacting dendritic shafts. Serial reconstruction of dendrites postsynaptic to labeled layer 6 cell axon terminals showed that a large proportion of the postsynaptic dendrites belonged to smooth and sparsely spiny stellate cells, suggesting a selective innervation of these cell types. In contrast, the geniculate projection to layer 4 made synapses primarily with dendritic spines and, as a result, the large majority of terminals ended on spiny cells. Since smooth and sparsely spiny stellate cells are thought to mediate inhibition within the cortex, we suggest that one effect of the layer 6 to layer 4 projection could be to contribute to inhibitory features of the receptive fields of layer 4 cells.
尽管猫纹状皮层第4层的细胞代表了视觉信息皮层处理的第一阶段,但它们的感受野特性比来自外侧膝状体核到该层的传入纤维要复杂得多。在考虑这些特性是如何产生时,我们将重点放在了皮层内的固有神经回路,特别是第6层到第4层的投射上。向第6层锥体细胞注射辣根过氧化物酶,并在光学和电子显微镜水平进行观察。发现标记的轴突终末形成不对称突触,并且强烈倾向于与树突干接触。对标记的第6层细胞轴突终末的突触后树突进行连续重建显示,大部分突触后树突属于平滑且棘突稀疏的星状细胞,这表明对这些细胞类型存在选择性支配。相比之下,膝状体到第4层的投射主要与树突棘形成突触,因此,绝大多数终末终止于有棘突的细胞上。由于平滑且棘突稀疏的星状细胞被认为介导皮层内的抑制作用,我们认为第6层到第4层投射的一个作用可能是促成第4层细胞感受野的抑制特性。