Sillito A M, Kemp J A, Milson J A, Berardi N
Brain Res. 1980 Aug 4;194(2):517-20. doi: 10.1016/0006-8993(80)91234-2.
Following from evidence supporting GABA as a putative inhibitory transmitter in the visual cortex, we have iontophoretically applied the GABA antagonist N-methyl bicuculline (Nmb) to simple cells in order to block the inhibitory inputs acting on them. We found that under these conditions previously sharply-tuned simple cells responded equally to all orientations. Moreover receptive field dimensions, judged by the response to stimuli at the optimal and orthogonal orientations, equated best with that expected from a single dLGN cell input. It seems thus, that asymmetries in the excitatory input are not a significant factor in the generation of simple cell orientation selectivity. The asymmetry underlying orientation selectivity rather originates from the operation of an intracortical inhibitory mechanism.
基于支持γ-氨基丁酸(GABA)作为视皮层中一种假定抑制性神经递质的证据,我们通过离子电渗法将GABA拮抗剂N-甲基荷包牡丹碱(Nmb)施加于简单细胞,以阻断作用于它们的抑制性输入。我们发现,在这些条件下,先前具有尖锐调谐特性的简单细胞对所有方向的反应均相同。此外,通过对最佳和正交方向刺激的反应来判断,感受野尺寸与单个背侧膝状核(dLGN)细胞输入所预期的最为相符。因此,兴奋性输入的不对称似乎不是简单细胞方向选择性产生的重要因素。方向选择性背后的不对称性反而源于皮层内抑制机制的运作。