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Uniformity detector retinal ganglion cells fire complex spikes and receive only light-evoked inhibition

机译:均匀性检测器视网膜神经节细胞发射复杂的尖峰并仅受到光诱发的抑制

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摘要

Retinal ganglion cells convey information by increasing their firing in response to an optimal visual stimulus or “trigger feature.” However, one class of ganglion cell responds to changes in the visual scene by decreasing its firing. These cells, termed uniformity detectors in the rabbit retina, are encountered only rarely and the synaptic mechanisms underlying their unusual responses have not been investigated. In this study, patch-clamp recordings of uniformity detectors show that the action potentials underlying the maintained firing arise within “complex spikes.” Both ON and OFF visual stimuli elicit only inhibitory synaptic input, the immediate effect of which is to suppress the maintained firing. However, this inhibition also alters the properties of the “renascent” spiking by increasing the amplitude of the spikes within each burst, suggesting that the effect may increase the efficacy of spike propagation and transmission.
机译:视网膜神经节细胞通过响应最佳视觉刺激或“触发特征”而增加其放电来传达信息。然而,一类神经节细胞通过降低其放电来响应视觉场景的变化。这些细胞在兔视网膜中被称为均匀性检测器,很少遇到,并且尚未研究其异常应答所依据的突触机制。在这项研究中,均匀性检测器的膜片钳记录表明,维持发射的动作电位出现在“复杂尖峰”内。开和关视觉刺激均仅引起抑制性突触输入,其直接作用是抑制维持的射击。但是,这种抑制也会通过增加每个脉冲中尖峰的幅度来改变“重发”尖峰的特性,这表明该效果可能会提高尖峰传播和传输的功效。

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