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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Light-evoked excitatory and inhibitory synaptic inputs to ON and OFF alpha ganglion cells in the mouse retina.
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Light-evoked excitatory and inhibitory synaptic inputs to ON and OFF alpha ganglion cells in the mouse retina.

机译:诱发小鼠视网膜中ON和OFFα神经节细胞的光诱发性和抑制性突触输入。

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摘要

Bipolar cell and amacrine cell synaptic inputs to alpha ganglion cells (alphaGCs) in dark-adapted mouse retinas were studied by recording the light-evoked excitatory cation current (DeltaIC) and inhibitory chloride current (DeltaICl) under voltage-clamp conditions, and the cell morphology was revealed by Lucifer yellow fluorescence with a confocal microscope. Three types of alphaGCs were identified. (1) ONalphaGCs exhibits no spike activity in darkness, increased spikes in light, sustained inward DeltaIC, sustained outward DeltaICl of varying amplitude, and large soma (20-25 microm in diameter) with alpha-cell-like dendritic field approximately 180-350 microm stratifying near 70% of the inner plexiform layer (IPL) depth. (2) Transient OFFalphaGCs (tOFFalphaGCs) exhibit no spike activity in darkness, transient increased spikes at light offset, small sustained outward DeltaIC in light, a large transient inward DeltaIC at light offset, a sustained outward DeltaICl, and a morphology similar to the ONalphaGCs except for that their dendrites stratified near 30% of the IPL depth. (3) Sustained OFFalphaGCs exhibit maintained spike activity of 5-10 Hz in darkness, sustained decrease of spikes in light, sustained outward DeltaIC, sustained outward DeltaICl, and a morphology similar to the tOFFalphaGCs. By comparing the response thresholds and dynamic ranges of alphaGCs with those of the preganglion cells, our data suggest that the light responses of each type of alphaGCs are mediated by different sets of bipolar cells and amacrine cells. This detailed physiological analysis complements the existing anatomical results and provides new insights on the functional roles of individual synapses in the inner mammalian retina.
机译:通过在电压钳制条件下记录光诱发的兴奋性阳离子电流(DeltaIC)和抑制性氯化物电流(DeltaICl),研究了暗适应小鼠视网膜中α神经节细胞(alphaGCs)的双极细胞和无长突触突触输入。用共聚焦显微镜通过路西法黄色荧光揭示形态。确定了三种类型的alphaGC。 (1)ONalphaGC在黑暗中不显示尖峰活动,在光中尖峰增加,持续的向内DeltaIC1,持续的向外幅度变化的DeltaIC1以及较大的体细胞(直径20-25微米)具有类似α细胞样树突的场大约为180-350微米分层,接近内部网状层(IPL)深度的70%。 (2)瞬态OFFalphaGCs(tOFFalphaGCs)在黑暗中不显示尖峰活动,在光偏移处瞬态增加的尖峰,在光中具有较小的持续向外向外的DeltaIC,在光偏移处具有较大的瞬态向内DeltaIC,持续的向外DeltaICl和类似于ONalphaGC的形态除了它们的树枝状晶体在IPL深度的30%附近分层外。 (3)持续的OFFalphaGC在黑暗中表现出维持的尖峰活性为5-10Hz,持续的尖峰减少,持续的向外DeltaIC,持续的向外DeltaIC1以及类似于tOFFalphaGC的形态。通过将αGCs的响应阈值和动态范围与神经节前细胞的响应阈值和动态范围进行比较,我们的数据表明,每种类型的αGCs的光响应是由不同组的双极细胞和无长突细胞介导的。这项详细的生理分析补充了现有的解剖学结果,并为哺乳动物内视网膜中单个突触的功能作用提供了新的见解。

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