Center for Molecular and Behavioral Neuroscience, Rutgers, The State University of New Jersey, 197 University Avenue, Newark, NJ 07102, USA.
Neuron. 2012 Aug 9;75(3):410-7. doi: 10.1016/j.neuron.2012.07.015.
A topographical relationship exists between the hippocampus-entorhinal cortex and the neocortex. However, it is not known how these anatomical connections are utilized during information exchange and behavior. We recorded theta oscillations along the entire extent of the septotemporal axis of the hippocampal CA1 pyramidal layer. While the frequency of theta oscillation remained same along the entire long axis, the amplitude and coherence between recording sites decreased from dorsal to ventral hippocampus (VH). Theta phase shifted monotonically with distance along the longitudinal axis, reaching ∼180° between the septal and temporal poles. The majority of concurrently recorded units were phase-locked to the local field theta at all dorsoventral segments. The power of VH theta had only a weak correlation with locomotion velocity, and its amplitude varied largely independently from theta in the dorsal part. Thus, theta oscillations can temporally combine or segregate neocortical representations along the septotemporal axis of the hippocampus.
海马-内嗅皮层与新皮层之间存在着拓扑关系。然而,目前尚不清楚这些解剖连接在信息交换和行为过程中是如何被利用的。我们沿着海马 CA1 锥体层的整个隔颞轴记录了θ振荡。虽然整个长轴的θ振荡频率保持不变,但记录部位之间的振幅和相干性从背侧海马(VH)逐渐降低。θ相位沿着纵轴单调地随距离变化,在隔核和颞极之间达到约 180°。大多数同时记录的单位在所有背腹段都与局部场θ相位锁定。VHθ 的功率与运动速度仅有微弱的相关性,其振幅在很大程度上与背侧部分的θ无关。因此,θ振荡可以在时间上沿着海马的隔颞轴组合或分离新皮层的代表。