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首页> 外文期刊>International Journal of Neural Systems >BIOPHYSICAL AND PHENOMENOLOGICAL MODELS OF MULTIPLE SPIKE INTERACTIONS IN SPIKE-TIMING DEPENDENT PLASTICITY
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BIOPHYSICAL AND PHENOMENOLOGICAL MODELS OF MULTIPLE SPIKE INTERACTIONS IN SPIKE-TIMING DEPENDENT PLASTICITY

机译:定时相关塑性过程中多个多次交互作用的生物物理和物候模型

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摘要

Spike-timing dependent plasticity (STDP) is a form of associative synaptic modification which depends on the respective timing of pre- and post-synaptic spikes. The biophysical mechanisms underlying this form of plasticity are currently not known. We present here a biophysical model which captures the characteristics of STDP, such as its frequency dependency, and the effects of spike pair or spike triplet interactions. We also make links with other well-known plasticity rules. A simplified phenomenological model is also derived, which should be useful for fast numerical simulation and analytical investigation of the impact of STDP at the network level.
机译:尖峰时序依赖性可塑性(STDP)是一种相关的突触修饰,其形式取决于突触前和突触后各自的时间。目前尚不知道这种可塑性形式的生物物理机制。我们在这里提出了一种生物物理模型,该模型捕获了STDP的特征,例如其频率依赖性以及尖峰对或尖峰三重态相互作用的影响。我们还与其他知名的可塑性规则建立了联系。还导出了简化的现象学模型,该模型对于快速数值模拟和STDP在网络级别的影响的分析研究应该是有用的。

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