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首页> 外文期刊>PLoS Computational Biology >Intrinsic Stability of Temporally Shifted Spike-Timing Dependent Plasticity
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Intrinsic Stability of Temporally Shifted Spike-Timing Dependent Plasticity

机译:暂时移位穗定时依赖性可塑性的内在稳定性

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Spike-timing dependent plasticity (STDP), a widespread synaptic modification mechanism, is sensitive to correlations between presynaptic spike trains and it generates competition among synapses. However, STDP has an inherent instability because strong synapses are more likely to be strengthened than weak ones, causing them to grow in strength until some biophysical limit is reached. Through simulations and analytic calculations, we show that a small temporal shift in the STDP window that causes synchronous, or nearly synchronous, pre- and postsynaptic action potentials to induce long-term depression can stabilize synaptic strengths. Shifted STDP also stabilizes the postsynaptic firing rate and can implement both Hebbian and anti-Hebbian forms of competitive synaptic plasticity. Interestingly, the overall level of inhibition determines whether plasticity is Hebbian or anti-Hebbian. Even a random symmetric jitter of a few milliseconds in the STDP window can stabilize synaptic strengths while retaining these features. The same results hold for a shifted version of the more recent “triplet” model of STDP. Our results indicate that the detailed shape of the STDP window function near the transition from depression to potentiation is of the utmost importance in determining the consequences of STDP, suggesting that this region warrants further experimental study.
机译:穗定时依赖性可塑性(STDP),广泛的突触修饰机制对突触前尖峰列车之间的相关性敏感,并且它在突触之间产生竞争。然而,STDP具有固有的不稳定性,因为强烈的突触更容易加强而不是弱者,导致它们在达到一些生物物理限制之前生长。通过仿真和分析计算,我们表明,在STDP窗口中的小时间换档,导致同步,或几乎同步,前后动作电位诱导长期抑郁症可以稳定突触强度。 Shifted STDP还稳定了突触后射击率,并可实现Hebbian和抗Hebbian形式的竞争性突触可塑性。有趣的是,整体抑制水平决定了可塑性是否是Hebbian或Anti-hebbian。即使是STDP窗口中几毫秒的随机对称抖动也可以在保留这些特征的同时稳定突触强度。相同的结果持有STDP的最近“三联网”模型的移动版本。我们的结果表明,STDP窗口功能的详细形状在从抑郁症转型到兴奋性附近的形状对于确定STDP的后果来说至关重要,这表明该区域需要进一步的实验研究。

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