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通过一种活动依赖的反馈机制对突触可塑性中的长时程增强/长时程抑制平衡进行调制。

Modulation of LTP/LTD balance in STDP by an activity-dependent feedback mechanism.

作者信息

Kubota Shigeru, Rubin Jonathan, Kitajima Tatsuo

机构信息

Department of Biomedical Information Engineering, Yamagata University, 4-3-16 Jonan, Yonezawa, Yamagata, 992-8510, Japan.

出版信息

Neural Netw. 2009 Jul-Aug;22(5-6):527-35. doi: 10.1016/j.neunet.2009.06.012. Epub 2009 Jun 30.

Abstract

Spike-timing-dependent plasticity (STDP) has been suggested to play a role in the development of functional neuronal connections. However, for STDP to contribute to the synaptic organization, its learning curve should satisfy a requirement that the magnitude of long-term potentiation (LTP) is approximately the same as that of long-term depression (LTD). Without such balance between LTP and LTD, all the synapses are potentiated toward the upper limit or depressed toward the lower limit. Therefore, in this study, we explore the mechanisms by which the LTP/LTD balance in STDP can be modulated adequately. We examine a plasticity model that incorporates an activity-dependent feedback (ADFB) mechanism, wherein LTP induction is suppressed by higher postsynaptic activity. In this model, strengthening an ADFB function gradually decreases the temporal average of the ratio of the magnitude of LTP to that of LTD, whereas enhancing background inhibition augments this ratio. Additionally, correlated inputs can be strengthened or weakened depending on whether the correlation time is shorter or longer than a threshold value, respectively, suggesting that STDP may lead to either Hebbian or anti-Hebbian plasticity outcomes. At an intermediate range of correlation times, the reversal between the two distinct plasticity regimes can occur by changing the level of ADFB modulation and inhibition, providing a physiological mechanism for neurons to select from functionally different forms of learning rules.

摘要

峰电位时间依赖可塑性(STDP)被认为在功能性神经元连接的发育中起作用。然而,要使STDP有助于突触组织,其学习曲线应满足一个要求,即长时程增强(LTP)的幅度与长时程抑制(LTD)的幅度大致相同。如果LTP和LTD之间没有这种平衡,所有突触都会朝着上限增强或朝着下限抑制。因此,在本研究中,我们探索了能充分调节STDP中LTP/LTD平衡的机制。我们研究了一个包含活动依赖反馈(ADFB)机制的可塑性模型,其中较高的突触后活动会抑制LTP的诱导。在这个模型中,增强ADFB功能会逐渐降低LTP幅度与LTD幅度之比的时间平均值,而增强背景抑制则会增大这个比值。此外,相关输入可以分别根据相关时间是短于还是长于阈值而增强或减弱,这表明STDP可能导致Hebbian或反Hebbian可塑性结果。在相关时间的中间范围内,通过改变ADFB调制和抑制水平,可以在两种不同的可塑性状态之间发生反转,为神经元从功能不同的学习规则形式中进行选择提供了一种生理机制。

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