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Local Excitatory Network and NMDA Receptor Activation Generate a Synchronous and Bursting Command from the Superior Colliculus

机译:本地兴奋网络和NMDA受体激活从上皮囊囊生成同步和爆发命令

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摘要

The generation of bursting spike activity in the deeper layers of the superior colliculus (SC) is a critical determinant of decision making in the initiation of orienting behaviors, such as saccades. The bursting activity exhibits a typical threshold effect that may arise from a nonlinear signal amplification process in the deeper layers of the SC. We used whole-cell patch-clamp recordings in rat SC slices to investigate the neuronal mechanism underlying the generation of such bursting activity. We found that (1) neurons in the intermediate gray layer [stratum griseum intermediale (SGI)] produce a prolonged bursting response when released from GABAA receptor-mediated inhibition, (2) this GABAA inhibition may partially arise from inhibitory interneurons within the SGI that are driven synaptically by glutamatergic excitatory inputs to the SC, (3) the bursting is not the result of the intrinsic membrane properties of individual SC neurons but is instead produced by local circuits within the SGI, (4) the bursting is mediated by activation of NMDA receptors, and (5) the bursting can be synchronous among SGI neurons. These results suggest that activation of a local excitatory network within the deeper layers of the SC and NMDA receptor-dependent synaptic transmission after release from GABAA inhibition are fundamental mechanisms that may explain the nonlinear signal amplification process in the deeper layers of the SC.
机译:在上丘(SC)的更深层中爆发的尖峰活动是定向行为(如扫视)的启动过程中决策的关键决定因素。突发活动表现出典型的阈值效应,该效应可能是由SC较深层中的非线性信号放大过程引起的。我们在大鼠SC切片中使用全细胞膜片钳记录来研究这种爆发活性产生的神经元机制。我们发现(1)从GABAA受体介导的抑制作用释放时,中间灰色层[灰质中间层(SGI)]中的神经元产生延长的爆发反应,(2)这种GABAA抑制作用可能部分来自于SGI内的抑制性中间神经元。是由SC的谷氨酸能兴奋性输入突触驱动的(3)爆发不是单个SC神经元固有膜性质的结果,而是由SGI内的局部回路产生的,(4)爆发是通过激活SGI介导的NMDA受体,以及(5)突发可能在SGI神经元之间是同步的。这些结果表明,从GABAA抑制释放后,SC较深层内的局部兴奋性网络的激活和NMDA受体依赖性突触传递是解释SC较深层中非线性信号放大过程的基本机制。

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