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Dynamics and Function of a CA1 Model of the Hippocampus during Theta and Ripples

机译:Theta和涟漪期间海马CA1模型的动力学和功能

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The hippocampus is known to be involved in spatial learning in rats. Spatial learning involves the encoding and replay of temporally sequenced spatial information. Temporally sequenced spatial memories are encoded and replayed by the firing rate and phase of pyramidal cells and inhibitory interneurons with respect to ongoing network oscillations (theta and ripples). Understanding how the different hippocampal neu-ronal classes interact during these encoding and replay processes is of great importance. A computational model of the CA1 microcircuit [3], [4], [5] that uses biophysical representations of the major cell types, including pyramidal cells and four types of inhibitory interneurons is extended to address: (1) How are the encoding and replay (forward and reverse) of behavioural place sequences controlled in the CA1 microcircuit during theta and ripples? and (2) What roles do the various types of inhibitory interneurons play in these processes?
机译:已知海马参与大鼠的空间学习。空间学习涉及时间序列的空间信息的编码和重放。相对于正在进行的网络振荡(θ和波纹),按时间顺序排列的空间记忆通过锥体细胞和抑制性中间神经元的发射速率和相位进行编码和重放。了解这些编码和重放过程中不同海马神经元类如何相互作用非常重要。使用主要细胞类型(包括锥体细胞和四种抑制性中间神经元)的生物物理表示法的CA1微电路[3],[4],[5]的计算模型可扩展为解决以下问题:(1)编码和编码方式如何?在θ和波纹期间在CA1微电路中控制的行为位置序列的重播(正向和反向)? (2)各种抑制性中间神经元在这些过程中起什么作用?

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