Kubota Shigeru, Kitajima Tatsuo
Department of Biomedical Information Engineering, Yamagata University, Yonezawa, Yamagata, Japan.
J Comput Neurosci. 2010 Apr;28(2):347-59. doi: 10.1007/s10827-010-0212-0. Epub 2010 Jan 27.
The maturation of cortical circuits is strongly influenced by sensory experience during a restricted critical period. The developmental alteration in the subunit composition of NMDA receptors (NMDARs) has been suggested to be involved in regulating the timing of such plasticity. However, this hypothesis does not explain the evidence that enhancing GABA inhibition triggers a critical period in the visual cortex. Here, to investigate how the NMDAR and GABA functions influence synaptic organization, we examine an spike-timing-dependent plasticity (STDP) model that incorporates the dynamic modulation of LTP, associated with the activity- and subunit-dependent desensitization of NMDARs, as well as the background inhibition by GABA. We show that the competitive interaction between correlated input groups, required for experience-dependent synaptic modifications, may emerge when both the NMDAR subunit expression and GABA inhibition reach a sufficiently mature state. This may suggest that the cooperative action of these two developmental mechanisms can contribute to embedding the spatiotemporal structure of input spikes in synaptic patterns and providing the trigger for experience-dependent cortical plasticity.
在有限的关键期内,感觉经验会强烈影响皮质回路的成熟。有研究表明,NMDA受体(NMDARs)亚基组成的发育变化参与调节这种可塑性的时间。然而,这一假设无法解释增强GABA抑制会触发视觉皮层关键期这一证据。在此,为了研究NMDAR和GABA功能如何影响突触组织,我们研究了一种尖峰时间依赖性可塑性(STDP)模型,该模型纳入了与NMDARs的活性和亚基依赖性脱敏相关的LTP动态调节,以及GABA的背景抑制。我们发现,当NMDAR亚基表达和GABA抑制都达到足够成熟的状态时,经验依赖性突触修饰所需的相关输入组之间的竞争性相互作用可能会出现。这可能表明,这两种发育机制的协同作用有助于将输入尖峰的时空结构嵌入突触模式,并为经验依赖性皮质可塑性提供触发因素。