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首页> 外文期刊>Annual Review of Neuroscience >Plasticity of Cortical Excitatory-Inhibitory Balance
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Plasticity of Cortical Excitatory-Inhibitory Balance

机译:皮质兴奋抑制平衡的可塑性

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Synapses are highly plastic and are modified by changes in patterns of neural activity or sensory experience. Plasticity of cortical excitatory synapses is thought to be important for learning and memory, leading to alterations in sensory representations and cognitive maps. However, these changes must be coordinated across other synapses within local circuits to preserve neural coding schemes and the organization of excitatory and inhibitory inputs, i.e., excitatory-inhibitory balance. Recent studies indicate that inhibitory synapses are also plastic and are controlled directly by a large number of neuromodulators, particularly during episodes of learning. Many modulators transiently alter excitatory-inhibitory balance by decreasing inhibition, and thus disinhibition has emerged as a major mechanism by which neuromodulation might enable long-term synaptic modifications naturally. This review examines the relationships between neuromodulation and synaptic plasticity, focusing on the induction of long-term changes that collectively enhance cortical excitatory-inhibitory balance for improving perception and behavior.
机译:突触具有很高的可塑性,可以通过改变神经活动或感觉体验来进行修饰。皮层兴奋性突触的可塑性被认为对于学习和记忆很重要,导致感觉表征和认知图谱的改变。但是,这些变化必须在局部回路中的其他突触之间进行协调,以保持神经编码方案以及兴奋性和抑制性输入的组织,即兴奋性-抑制性平衡。最近的研究表明抑制性突触也是可塑性的,并且由大量的神经调节剂直接控制,特别是在学习期间。许多调节剂通过降低抑制作用来暂时改变兴奋性-抑制作用的平衡,因此,抑制作用已成为神经调节作用自然引起长期突触修饰的主要机制。这项审查审查神经调节和突触可塑性之间的关系,侧重于长期变化的诱导,共同增强皮质兴奋性-抑制性平衡,以改善知觉和行为。

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