首页> 外文会议>International Conference on Adaptive and Natural Computing Algorithms; 2005; Coimbra(PT) >Cortical Modulation of Synaptic Efficacies through Norepinephrine
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Cortical Modulation of Synaptic Efficacies through Norepinephrine

机译:通过去甲肾上腺素对突触功效的皮质调节

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I propose a norepinephrine- (NE-) neuromodulatory system, which I call "enhanced-excitatory and enhanced-inhibitory (E-E/E-I) system". The E-E/E-I system enhanced excitatory and inhibitory synaptic connections between cortical cells, modified their ongoing background activity, and influenced subsequent cognitive neuronal processing. When stimulated with sensory features, cognitive performance of neurons, signal-to-noise (S/N) ratio, was greatly enhanced, for which one of the three possible S/N enhancement schemes operated under the E-E/E-I system, namely; ⅰ) signal enhancement more than noise increase, ⅱ) signal enhancement and noise reduction, and ⅲ) noise reduction more than signal decrease. When a weaker (or subthreshold) stimulus was presented, the scheme (ⅱ) effectively enhanced S/N ratio, whereas the scheme (ⅲ) was effective for enhancing stronger stimuli. I suggest that a release of NE into cortical areas may modify their background neuronal activity, whereby cortical neurons can effectively respond to a variety of external sensory stimuli.
机译:我提出了去甲肾上腺素(NE-)神经调节系统,我称之为“增强兴奋性和增强抑制性(E-E / E-I)系统”。 E-E / E-I系统增强了皮层细胞之间的兴奋性和抑制性突触连接,改变了它们正在进行的背景活动,并影响了随后的认知神经元加工。当用感觉特征刺激时,神经元的认知性能,信噪比(S / N)大大提高,为此,在E-E / E-I系统下运行的三种可能的S / N增强方案之一是: ⅰ)信号增强比噪声增加更多,ⅱ)信号增强和噪声减少,ⅲ)噪声比信号下降更多的噪声。当提出较弱(或低于阈值)的刺激时,方案(ⅱ)有效地增强了信噪比,而方案(ⅲ)有效地增强了较强的刺激。我建议将NE释放到皮层区域可能会修改其背景神经元活动,从而皮层神经元可以有效地响应各种外部感觉刺激。

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