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Effect of Pre- and Postsynaptic Firing Patterns on Synaptic Competition

机译:突触前和突触后射击方式对突触竞争的影响

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Synaptic plasticity is known to depend on the timing of pre and postsynaptic spikes, a.k.a. spike-timing-dependent plasticity (STDP). This implies that outcomes brought about by STDP should be sensitive to the dynamic properties of pre and postsynaptic neuron activity. Furthermore, because the classical model of STDP does not consider the effect of various pre and postsynaptic spike patterns on the outcome, it fails to reproduce the dependence of the synaptic plasticity polarity, namely the long-term potentiation or depression, on firing rates. In this study, we investigated the interplay between realistic pre and postsynaptic dynamic property models and a modified STDP model, reproducing the firing rate dependency. Our results showed that strengthened synapses depend on a combination of pre and postsynaptic properties as well as input firing rates, suggesting that a postsynaptic neuron may favor specific spike statistics and input firing rates may facilitate this tendency.
机译:已知突触可塑性取决于突触前和突触后尖峰的时间,亦称尖峰时间依赖性可塑性(STDP)。这意味着由STDP带来的结果应该对突触前和突触后神经元活动的动态特性敏感。此外,由于STDP的经典模型未考虑突触前和突触后各种突波模式对结局的影响,因此无法再现突触可塑性极性(即长期增强或抑制)对放电速率的依赖性。在这项研究中,我们调查了现实的突触前和突触后动态特性模型和修改后的STDP模型之间的相互作用,从而再现了发射速率的依赖性。我们的结果表明,增强的突触取决于突触前和突触后特性以及输入击发速率的组合,这表明突触后神经元可能会支持特定的峰值统计,而输入击发速率可能会促进这种趋势。

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