...
首页> 外文期刊>Cell Reports >Timed Synaptic Inhibition Shapes NMDA Spikes, Influencing Local Dendritic Processing and Global I/O Properties of Cortical Neurons
【24h】

Timed Synaptic Inhibition Shapes NMDA Spikes, Influencing Local Dendritic Processing and Global I/O Properties of Cortical Neurons

机译:定时突触抑制形状NMDA尖峰,影响皮质神经元的局部树突加工和全局I / O属性。

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Summary The NMDA spike is a long-lasting nonlinear phenomenon initiated locally in the dendritic branches of a variety of cortical neurons. It plays a key role in synaptic plasticity and in single-neuron computations. Combining dynamic system theory and computational approaches, we now explore how the timing of synaptic inhibition affects the NMDA spike and its associated membrane current. When impinging on its early phase, individual inhibitory synapses strongly, but transiently, dampen the NMDA spike; later inhibition prematurely terminates it. A single inhibitory synapse reduces the NMDA-mediated Ca2+ current, a key player in plasticity, by up to 45%. NMDA spikes in distal dendritic branches/spines are longer-lasting and more resilient to inhibition, enhancing synaptic plasticity at these branches. We conclude that NMDA spikes are highly sensitive to dendritic inhibition; sparse weak inhibition can finely tune synaptic plasticity both locally at the dendritic branch level and globally at the level of the neuron’s output.
机译:小结NMDA尖峰是在多种皮质神经元的树突状分支中局部引发的长期非线性现象。它在突触可塑性和单神经元计算中起关键作用。结合动态系统理论和计算方法,我们现在探索突触抑制的时机如何影响NMDA尖峰及其相关的膜电流。当影响其早期阶段时,单个抑制突触会强烈但短暂地抑制NMDA尖峰。以后的抑制会过早地终止它。单个抑制性突触可将可塑性的关键参与者NMDA介导的Ca 2 + 电流降低多达45%。远端树突状分支/脊柱中的NMDA尖峰持续时间更长,并且对抑制作用更有抵抗力,从而增强了这些分支处的突触可塑性。我们得出结论,NMDA尖峰对树突抑制高度敏感;稀疏的微弱抑制可以在树突状分支水平上局部地和在神经元输出水平上整体上精细地调节突触可塑性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号