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Regulation of spontaneous rhythmic activity and organization of pacemakers as memory traces by spike-timing-dependent synaptic plasticity in a hippocampal model

机译:通过海马模型中的依赖于时序的突触可塑性调节自发性节律活动和起搏器的组织,以作为记忆痕迹

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摘要

It is widely believed that memory traces can be stored through synaptic conductance modification of dense excitatory recurrent connections (ERCs) in the hippocampal CA3 region, namely associative memory. ERCs, on the other hand, are crucial to maintain spontaneous rhythmic activity in CA3. Since it is experimentally suggested that synaptic conductances of ERCs are modified through spike-timing-dependent synaptic plasticity (STDP), rhythmic activity might modify ERCs with the presence of STDP because rhythmic activity involves discharges of pyramidal cells. Memory patterns that are stored using ERCs might thus be modified or even destroyed. Rhythmic activity itself might also be modified. In this study, we assumed that the synaptic modification in the hippocampal CA3 was subject to STDP, and examined the coexistence of memory traces and rhythmic activity. The activity of the network was dominated by radially propagating burst activities (radial activities) that initiated at local regions and acted as pacemakers. The frequency of the rhythmic activity converged into one specific frequency with time, depending on the shape of the STDP functions. This indicates that rhythmic activity could be regulated by STDP. By applying theta burst stimulation locally to the network, we found that the stimulation whose frequency was higher than that of the spontaneous rhythmic activity could organize a new radial activity at the stimulus site. Newly organized radial activities were preserved for seconds after the termination of the stimulation. These results imply that CA3 with STDP has an ability to self-regulate rhythmic activity and that memory traces can coexist with the rhythmic activity by means of radial activity.
机译:人们普遍认为,记忆痕迹可以通过海马CA3区密集的兴奋性递归连接(ERC)的突触电导修饰来存储,即联想记忆。另一方面,ERC对于维持CA3的自发性节奏活动至关重要。由于实验表明ERCs的突触电导是通过尖峰时变依赖性突触可塑性(STDP)进行修饰的,因此有节律性活动可能会改变ERC的节律活动,因为节律性活动涉及锥体细胞的放电。因此,使用ERC存储的内存模式可能会被修改甚至破坏。有节奏的活动本身也可能会被修改。在这项研究中,我们假设海马CA3中的突触修饰受到STDP的影响,并检查了记忆痕迹和节律活动的共存。网络的活动主要由径向传播的突发活动(径向活动)主导,这些活动始于当地,起起搏器的作用。有节奏的活动的频率随时间收敛到一个特定的频率,具体取决于STDP功能的形状。这表明STDP可以调节节律性活动。通过在网络上局部应用theta爆发刺激,我们发现频率高于自发节奏活动的刺激可以在刺激部位组织新的放射状活动。刺激终止后,新组织的径向活动会保留几秒钟。这些结果暗示具有STDP的CA3具有自我调节节律活动的能力,并且记忆轨迹可以通过放射状活动与节律活动共存。

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