Casey Eye Institute, Department of Ophthalmology, School of Medicine, Oregon Health and Science University, Portland, OR 97239, USA.
J Physiol. 2013 Jan 1;591(1):303-25. doi: 10.1113/jphysiol.2012.243113. Epub 2012 Oct 8.
Lateral inhibition produces the centre-surround organization of retinal receptive fields, in which inhibition driven by the mean luminance enhances the sensitivity of ganglion cells to spatial and temporal contrast. Surround inhibition is generated in both synaptic layers; however, the synaptic mechanisms within the inner plexiform layer are not well characterized within specific classes of retinal ganglion cell. Here, we compared the synaptic circuits generating concentric centre-surround receptive fields in ON and OFF brisk-sustained ganglion cells (BSGCs) in the rabbit retina. We first characterized the synaptic inputs to the centre of ON BSGCs, for comparison with previous results from OFF BSGCs. Similar to wide-field ganglion cells, the spatial extent of the excitatory centre and inhibitory surround was larger for the ON than the OFF BSGCs. The results indicate that the surrounds of ON and OFF BSGCs are generated in both the outer and the inner plexiform layers. The inner plexiform layer surround inhibition comprised GABAergic suppression of excitatory inputs from bipolar cells. However, ON and OFF BSGCs displayed notable differences. Surround suppression of excitatory inputs was weaker in ON than OFF BSGCs, and was mediated largely by GABA(C) receptors in ON BSGCs, and by both GABA(A) and GABA(C) receptors in OFF BSGCs. Large ON pathway-mediated glycinergic inputs to ON and OFF BSGCs also showed surround suppression, while much smaller GABAergic inputs showed weak, if any, spatial tuning. Unlike OFF BSGCs, which receive strong glycinergic crossover inhibition from the ON pathway, the ON BSGCs do not receive crossover inhibition from the OFF pathway. We compare and discuss possible roles for glycinergic inhibition in the two cell types.
侧抑制产生视网膜感受野的中心-周围组织,其中由平均亮度驱动的抑制增强了神经节细胞对空间和时间对比度的敏感性。周围抑制在两个突触层中产生;然而,在内丛状层内的突触机制在特定类型的视网膜神经节细胞中尚未得到很好的描述。在这里,我们比较了在兔视网膜中产生同心中心-周围感受野的 ON 和 OFF 快速持续神经节细胞(BSGC)中的突触回路。我们首先描述了 ON BSGC 中心的突触输入,以便与之前的 OFF BSGC 结果进行比较。与宽场神经节细胞相似,ON BSGC 的兴奋中心和抑制周围的空间范围大于 OFF BSGC。结果表明,ON 和 OFF BSGC 的周围是在外丛状层和内丛状层中产生的。内丛状层周围抑制包括双极细胞兴奋性输入的 GABA 能抑制。然而,ON 和 OFF BSGC 显示出明显的差异。ON BSGC 中的周围抑制比 OFF BSGC 中的弱,并且主要由 GABA(C)受体介导,而 OFF BSGC 中的 GABA(A)和 GABA(C)受体介导。ON 和 OFF BSGC 中较大的 ON 途径介导的甘氨酸能输入也显示出周围抑制,而较小的 GABA 能输入如果有的话,空间调谐也很弱。与从 ON 途径接收强烈的甘氨酸交叉抑制的 OFF BSGC 不同,ON BSGC 不从 OFF 途径接收交叉抑制。我们比较和讨论了甘氨酸能抑制在这两种细胞类型中的可能作用。