首页> 美国卫生研究院文献>The Journal of Neuroscience >Parallel ON and OFF Cone Bipolar Inputs Establish Spatially Coextensive Receptive Field Structure of Blue-Yellow Ganglion Cells in Primate Retina
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Parallel ON and OFF Cone Bipolar Inputs Establish Spatially Coextensive Receptive Field Structure of Blue-Yellow Ganglion Cells in Primate Retina

机译:平行的ON和OFF锥双极输入在灵长类动物视网膜中建立蓝黄色神经节细胞的空间共扩展感受野结构。

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摘要

In the primate retina the small bistratified, “blue-yellow” color-opponent ganglion cell receives parallel ON-depolarizing and OFF-hyperpolarizing inputs from short (S)-wavelength sensitive and combined long (L)- and middle (M)-wavelength sensitive cone photoreceptors, respectively. However, the synaptic pathways that create S versus LM cone-opponent receptive field structure remain controversial. Here, we show in the macaque monkey retina in vitro that at photopic light levels, when an identified rod input is excluded, the small bistratified cell displays a spatially coextensive receptive field in which the S-ON-input is in spatial, temporal, and chromatic balance with the LM-OFF-input. ON pathway block with l-AP-4, the mGluR6 receptor agonist, abolished the S-ON response but spared the LM-OFF response. The isolated LM component showed a center-surround receptive field structure consistent with an input from OFF-center, ON-surround “diffuse” cone bipolar cells. Increasing retinal buffering capacity with HEPES attenuated the LM-ON surround component, consistent with a non-GABAergic outer retina feedback mechanism for the bipolar surround. The GABAa/c receptor antagonist picrotoxin and the glycine receptor antagonist strychnine did not affect chromatic balance or the basic coextensive receptive field structure, suggesting that the LM-OFF field is not generated by an inner retinal inhibitory pathway. We conclude that the opponent S-ON and LM-OFF responses originate from the excitatory receptive field centers of S-ON and LM-OFF cone bipolar cells, and that the LM-OFF- and ON-surrounds of these parallel bipolar inputs largely cancel, explaining the small, spatially coextensive but spectrally antagonistic receptive field structure of the blue-ON ganglion cell.
机译:在灵长类动物视网膜中,小的双层,“蓝黄”色对手神经节细胞从短(S)波长敏感和长(L)和中(M)波长组合接收平行的ON-去极化和OFF-超极化输入分别是敏感的锥形感光体。然而,产生S对LM锥对手感受野结构的突触途径仍存在争议。在这里,我们在猕猴的视网膜中显示出,在可见光水平下,当排除了确定的杆输入时,小两层细胞显示了一个空间共扩展的感受野,其中S-ON输入在空间,时间和LM-OFF输入实现色平衡。使用mGluR6受体激动剂1-AP-4的ON途径阻滞取消了S-ON反应,但保留了LM-OFF反应。隔离的LM组件显示出中心环绕接收场结构,该结构与偏离中心,围绕ON的“扩散”锥双极细胞的输入一致。 HEPES增强的视网膜缓冲能力减弱了LM-ON环绕声分量,这与双极环绕声的非GABA能的外部视网膜反馈机制一致。 GABA a / c受体拮抗剂微毒素和甘氨酸受体拮抗剂士的宁不影响色平衡或基本的共扩展感受野结构,表明LM-OFF场不是由内部视网膜抑制途径产生的。我们得出结论,对手的S-ON和LM-OFF响应源自S-ON和LM-OFF锥双极细胞的兴奋性感受野中心,并且这些平行双极输入的LM-OFF-和ON-周围大大抵消了,解释了蓝ON神经节细胞的小空间共拓但在光谱上拮抗的感受野结构。

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