Yamaguchi Yoko, Aota Yoshito, Sato Naoyuki, Wagatsuma Hiroaki, Wu Zhihua
Laboratory for Dynamics of Emergent Intelligence, RIKEN Brain Science Institute, Wako-shi, Saitama 351-0198, Japan.
J Integr Neurosci. 2004 Jun;3(2):143-57. doi: 10.1142/s0219635204000488.
Rat hippocampal cells exhibit characteristic phase-dependent firings when oscillation in frequency range around 8Hz is present. Based on the hypothesis that theta phase coding is generated by synchronization of neural activities, an autoassociative network model of the hippocampus and the entorhinal cortex was analyzed to explore mechanisms underlying episodic memory. Phase coding in theta rhythm enables instantaneous acquisition of experienced events including temporal and spatial contents. Further comparison with electrophysiological data from both rodents and primates suggests a possible role of theta oscillations in memory encoding and online processing of episodic events.
当存在频率在8Hz左右的振荡时,大鼠海马体细胞会表现出特征性的相位依赖性放电。基于神经活动同步产生θ相位编码的假设,对海马体和内嗅皮层的自联想网络模型进行了分析,以探索情景记忆背后的机制。θ节律中的相位编码能够即时获取包括时间和空间内容在内的经历事件。与来自啮齿动物和灵长类动物的电生理数据的进一步比较表明,θ振荡在情景事件的记忆编码和在线处理中可能发挥作用。