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前额叶与海马体θ振荡的相位锁定。

Prefrontal phase locking to hippocampal theta oscillations.

作者信息

Siapas Athanassios G, Lubenov Evgueniy V, Wilson Matthew A

机构信息

Computation and Neural Systems Program, Division of Biology, California Institute of Technology, Pasadena, California 91125, USA.

出版信息

Neuron. 2005 Apr 7;46(1):141-51. doi: 10.1016/j.neuron.2005.02.028.

Abstract

The interactions between cortical and hippocampal circuits are critical for memory formation, yet their basic organization at the neuronal network level is not well understood. Here, we demonstrate that a significant portion of neurons in the medial prefrontal cortex of freely behaving rats are phase locked to the hippocampal theta rhythm. In addition, we show that prefrontal neurons phase lock best to theta oscillations delayed by approximately 50 ms and confirm this hippocampo-prefrontal directionality and timing at the level of correlations between single cells. Finally, we find that phase locking of prefrontal cells is predicted by the presence of significant correlations with hippocampal cells at positive delays up to 150 ms. The theta-entrained activity across cortico-hippocampal circuits described here may be important for gating information flow and guiding the plastic changes that are believed to underlie the storage of information across these networks.

摘要

皮层与海马回路之间的相互作用对记忆形成至关重要,但其在神经网络层面的基本组织仍未得到充分理解。在此,我们证明,自由行为大鼠内侧前额叶皮层中的很大一部分神经元与海马θ节律锁相。此外,我们表明前额叶神经元对延迟约50毫秒的θ振荡锁相最佳,并在单细胞间相关性水平上证实了这种海马-前额叶的方向性和时间关系。最后,我们发现前额叶细胞的锁相可由其与海马细胞在长达150毫秒的正向延迟时存在显著相关性来预测。这里描述的跨皮层-海马回路的θ节律夹带活动,可能对控制信息流以及引导被认为是这些网络信息存储基础的可塑性变化很重要。

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