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Non-linear high-gain and sustained-to-transient signal transmission from rods to amacrine cells in dark-adapted retina of Ambystoma

机译:暗适应性Ambystoma视网膜中从杆到无长突细胞的非线性高增益和持续瞬态信号传输

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摘要

In darkness, On-Off amacrine cells (ACs) of the tiger salamander retina exhibited large spontaneous transient depolarizing potentials (sTDPs) with average peak amplitude of 5.05 ± 2.5 mV and average frequency of 0.42 ± 0.25 s−1. Under voltage-clamp conditions the cell displayed large spontaneous postsynaptic currents (sPSCs) with average peak amplitude of 98 ± 39 pA and average frequency of 0.45 ± 0.22 s−1. To a light step, ACs gave rise to a transient ‘On’ response at the light onset and a transient ‘Off’ response at light offset, followed by a train of TDPs (‘After’ response). Near the response threshold (0.3 activated rhodopsin molecules per rod per second), light-evoked TDPs (leTDPs) of similar amplitude and kinetics as the large sTDPs observed in darkness were seen, and about half of these leTDPs elicited a regenerative potential (RP). Brighter light steps gave rise to more leTDPs and higher rates of RPs in the On, Off and After responses. Within the linear response range of the rods, the AC response was non-linear, with the highest gain (676 ± 429) near the dark potential. The amplitude of Off responses increased with the duration of the light step, and ACs may use this to encode speeds of moving stimuli: the faster the light object moves, the smaller the AC Off response. Moreover, the number of leTDPs in the AC After response increased with light intensity, and the onset of the After response coincides with bipolar cell tail response recovery. One possible origin of the large sTDPs and leTDPs is the spontaneous and depolarization-induced regenerative calcium potentials (RCaPs) in bipolar cell synaptic terminals. RCaPs in bipolar cell synaptic terminals cause transient glutamate release that results in the sTDPs in darkness, and leTDPs in On, Off and After responses in ACs.
机译:在黑暗中,虎sal视网膜的开-关无长突细胞(AC)表现出较大的自发瞬时去极化电位(sTDP),平均峰值幅度为5.05±2.5 mV,平均频率为0.42±0.25 s -1 。在电压钳制条件下,细胞显示出较大的自发突触后电流(sPSC),平均峰值幅度为98±39 pA,平均频率为0.45±0.22 s -1 。轻而易举的一步,AC在光开始时产生了一个短暂的“开”响应,在光偏移时产生了一个短暂的“关”响应,随后是一系列的TDP(“后”响应)。在响应阈值附近(每棒每秒0.3个激活的视紫红质分子),可以看到幅度和动力学与在黑暗中观察到的大型sTDP相似的光诱发性TDP(leTDP),其中约有一半的leTDP产生了再生潜力(RP)。 。明亮的光阶在“开”,“关”和“后”响应中产生更多的leTDP和更高的RP比率。在棒的线性响应范围内,AC响应是非线性的,在暗电势附近具有最高增益(676±429)。关闭响应的幅度随光阶跃的持续时间而增加,并且AC可以使用它来编码移动刺激的速度:灯光对象移动得越快,AC关闭响应就越小。此外,AC After响应中的leTDP的数量随着光强度而增加,After响应的发生与双极细胞尾部响应的恢复相一致。大型sTDP和leTDP的一种可能来源是双极细胞突触末端的自发和去极化诱导的再生钙电势(RCaP)。双极细胞突触末端的RCaP会导致短暂的谷氨酸释放,从而导致sTDP在黑暗中,而leTDP在AC中处于开,关和后响应状态。

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