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Spikelet currents in frog tectal neurons with different firing patterns in vitro.

机译:蛙顶盖神经元中的小穗电流在体外具有不同的发射模式。

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摘要

Neuronal potential-dependent membrane currents are important in shaping the integration of synaptic inputs. Our recordings in voltage-clamp mode indicate that the small fast inward currents (spikelet currents), which were several times smaller than action potential (AP) currents, are a distinguished feature of 33% of neurons from 8 to 6 layers of the frog tectum. Out of all neuronal types described previously, only phasic cells and neurons with 'sag' in response to hyperpolarizing step current injection did not show spikelet currents. These small fast inward currents were sensitive to the intracellular administration of the sodium channel blocker QX-314, but not to the extracellular application of a glutamate receptor antagonist kynurenic acid. This suggests that spikelet currents are mediated by fast voltage-dependent Na(+) channels. Since spikelet currents could also be elicited with synaptic stimulation it is possible that spikelets are generated in dendrites and, thus, are important for fast integration of visual signals in tectal neurons.
机译:神经元电位依赖的膜电流在塑造突触输入的整合中很重要。我们在电压钳模式下的记录表明,小的快速向内电流(小尖峰电流)比动作电位(AP)电流小几倍,这是蛙盖的8到6层神经元的33%的显着特征。在先前描述的所有神经元类型中,仅对超极化步进电流注入有“下陷”的相细胞和神经元未显示出小尖峰电流。这些小的快速内向电流对钠通道阻滞剂QX-314的细胞内给药敏感,但对谷氨酸受体拮抗剂强尿酸的细胞外给药不敏感。这表明尖峰电流是由快速电压依赖性Na(+)通道介导的。由于还可以通过突触刺激引起小穗电流,因此可能在树突中产生小穗,因此对于在视神经中快速整合视觉信号很重要。

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