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Synaptic organization and ionic basis of on and off channels in mudpuppy retina. II. Chloride-dependent ganglion cell mechanisms

机译:泥mud视网膜内外通道的突触组织和离子基础。二。氯化物依赖性神经节细胞机制

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摘要

Extracellular ganglion cell recordings in the perfused mudpuppy eyecup show that a chloride-free (c-f) perfusate abolishes the center and surround excitation of on-center cells, the surround excitation of off- center cells, and the on discharge of on-off cells. These changes in ganglion cell receptive field organization are anticipated in view of the effects of a c-f environment on the neurons which are presynaptic to the ganglion cells. However, chloride-dependent inhibitory postsynaptic (IPS) responses have been observed in on-off ganglion cells. These inhibitory postsynaptic potentials (IPSP's) are preceeded by (ESPS's) exitatory postsynaptic potentials and are apparently mediated by amacrine cells. The light-activated hyperpolarization of off cells is not the result of a chloride-dependent IPSP and probably results from disfacilitation.
机译:灌注的泥p眼罩中的细胞外神经节细胞记录显示,不含氯化物的(c-f)灌注液消除了中心细胞的中心和周围激发,中心细胞周围的激发以及开关细胞的放电。考虑到c-f环境对神经节细胞突触前神经元的影响,预期神经节细胞感受野组织的这些变化。但是,在开关神经节细胞中已观察到氯化物依赖性抑制突触后(IPS)反应。这些抑制性突触后电位(IPSP)先于(ESPS)的出口突触后电位,并且显然由无长突细胞介导。脱细胞的光激活超极化不是氯化物依赖性IPSP的结果,可能是归因于衰弱。

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