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A Novel Learning Rule for Long-Term Plasticity of Short-Term Synaptic Plasticity Enhances Temporal Processing

机译:短期突触可塑性的长期可塑性的新的学习规则增强了时间加工。

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摘要

It is well established that short-term synaptic plasticity (STP) of neocortical synapses is itself plastic – e.g., the induction of LTP and LTD tend to shift STP towards short-term depression and facilitation, respectively. What has not been addressed theoretically or experimentally is whether STP is “learned”; that is, is STP regulated by specific learning rules that are in place to optimize the computations performed at synapses, or, are changes in STP essentially an epiphenomenon of long-term plasticity? Here we propose that STP is governed by specific learning rules that operate independently and in parallel of the associative learning rules governing baseline synaptic strength. We describe a learning rule for STP and, using simulations, demonstrate that it significantly enhances the discrimination of spatiotemporal stimuli. Additionally we generate a set of experimental predictions aimed at testing our hypothesis.
机译:众所周知,新皮层突触的短期突触可塑性(STP)本身就是可塑性的-例如,LTP和LTD的诱导倾向于使STP分别向短期抑郁和促进转变。在理论上或实验上尚未解决的问题是是否“学习了” STP。就是说,STP是否受特定的学习规则调节,以优化在突触中执行的计算,或者STP的变化本质上是长期可塑性的现象?在这里,我们建议STP受特定的学习规则支配,这些规则独立且与控制基线突触强度的关联学习规则并行运行。我们描述了STP的学习规则,并使用模拟方法证明了它大大增强了对时空刺激的区分。此外,我们生成了一组旨在检验我们的假设的实验预测。

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