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首页> 外文期刊>Neuroscience Research: The Official Journal of the Japan Neuroscience Society >Non-NMDA and NMDA receptors are involved in suprathreshold excitation of network of frog tectal neurons by a single retinal ganglion cell.
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Non-NMDA and NMDA receptors are involved in suprathreshold excitation of network of frog tectal neurons by a single retinal ganglion cell.

机译:非NMDA和NMDA受体参与单个视网膜神经节细胞的蛙顶神经元网络的阈上激发。

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摘要

NMDA receptors play an important functional role in the neuron excitability and plasticity. The conditions and consequences of their activation are of interest for many neuroscientists. This investigation was designed to explore an activation of the NMDA receptors of frog tectal neurons in vivo by a burst of spikes of individual retinotectal fiber. We show that: (1) the NMDA receptors of tectal neurons can be activated by an intense burst discharge of an individual ganglion cell (likely darkness detector) at physiological conditions. (2) Activation of the NMDA receptors is achieved, primarily, due to temporal summation and frequency facilitation of the fast non-NMDA synaptic potentials. However, it is very likely that spatial summation of the fast retinotectal synaptic potentials with excitatory synaptic potentials of recurrent connections contributes to elicit the NMDA response. (3) The activation of NMDA receptors causes a higher level of activity of tectal neuron network. The suprathreshold excitation of efferent tectal neurons is characteristic for this level. Therefore, the burst discharge of only single retinal ganglion cell can activate the tectobulbospinal tract and lead to the motor reaction.
机译:NMDA受体在神经元兴奋性和可塑性中起重要的功能作用。激活它们的条件和后果是许多神经科学家感兴趣的。这项研究的目的是探索通过单个视网膜-视网膜纤维尖峰的爆发在体内激活青蛙-视网膜神经元的NMDA受体。我们表明:(1)在生理条件下,单个神经节细胞(可能是黑暗探测器)的强烈爆发放电可以激活顶神经的NMDA受体。 (2)NMDA受体的激活主要是由于快速的非NMDA突触电位的时间累加和频率促进而实现的。但是,极有可能的是,视网膜视网膜快速突触电位与复发性连接的兴奋性突触电位的空间总和有助于引发NMDA反应。 (3)NMDA受体的激活引起了顶神经网络活动的提高。顶出神经元的超阈值兴奋是该水平的特征。因此,仅单个视网膜神经节细胞的猝发放电可激活直肠球面神经束并导致运动反应。

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