Department of Psychology, University of Connecticut, Storrs, CT 06269-1020, USA.
J Neurophysiol. 2011 Jun;105(6):2675-86. doi: 10.1152/jn.00837.2010. Epub 2011 Mar 16.
Theta (6-12 Hz) field potentials and the synchronization (coherence) of these potentials present neural network indices of hippocampal physiology. Theta signals within the hippocampal formation may reflect alterations in sensorimotor integration, the flow of sensory input, and/or distinct cognitive operations. While the power and coherence of theta signals vary across lamina within the septal hippocampus, limited information is available about variation in these indices across the septotemporal (long) or areal axis. The present study examined the relationship of locomotor speed to theta indices at CA1 and dentate gyrus (DG) sites across the septotemporal axis as well as in the entorhinal cortex. Our findings demonstrate the dominant relationship of speed to theta indices at septal sites. This relationship diminished systematically with distance from the septal pole of the hippocampus at both CA1 and DG sites. While theta power at entorhinal sites varied in relation to speed, there were no differences across the areal axis of the entorhinal cortex. Locomotor speed was also related to changes in theta coherence along the septotemporal axis as well as between the hippocampus and entorhinal cortex. In addition to the speed-related variation, we observed a decrease in theta power at more temporal hippocampal sites over repeated behavioral testing within a single day that was not observed at septal sites. The results outline a dynamic and distributed pattern of network activity across the septotemporal axis of the hippocampus in relation to locomotor speed and recent past experience.
θ 波(6-12 Hz)场电位及其同步(相干性)是海马体生理学的神经网络指标。海马体结构中的θ 波信号可能反映了感觉运动整合、感觉输入的流动和/或不同的认知操作的变化。虽然在隔海马体的各个层中,θ 波信号的功率和相干性有所不同,但关于这些指数在隔颞(长)或区域轴上的变化的信息有限。本研究检查了运动速度与 CA1 和齿状回(DG)部位θ 指数之间的关系,以及在海马旁回的关系。我们的发现表明,速度与隔区部位θ 指数之间存在主导关系。这种关系随着距离海马体隔区极点的增加而系统地减小,无论是在 CA1 还是 DG 部位。虽然海马旁回部位的θ 波功率与速度有关,但在海马旁回皮质的区域轴上没有差异。运动速度也与θ 波相干性沿着隔颞轴以及海马体和海马旁回之间的变化有关。除了与速度相关的变化之外,我们还观察到在一天内重复进行行为测试时,更多颞部海马体部位的θ 波功率下降,而在隔区部位则没有观察到这种情况。结果概述了与运动速度和最近过去的经验有关的海马体隔颞轴上的网络活动的动态和分布式模式。