O'Keefe J, Recce M L
Department of Anatomy and Developmental Biology, University College London, U.K.
Hippocampus. 1993 Jul;3(3):317-30. doi: 10.1002/hipo.450030307.
Many complex spike cells in the hippocampus of the freely moving rat have as their primary correlate the animal's location in an environment (place cells). In contrast, the hippocampal electroencephalograph theta pattern of rhythmical waves (7-12 Hz) is better correlated with a class of movements that change the rat's location in an environment. During movement through the place field, the complex spike cells often fire in a bursting pattern with an interburst frequency in the same range as the concurrent electroencephalograph theta. The present study examined the phase of the theta wave at which the place cells fired. It was found that firing consistently began at a particular phase as the rat entered the field but then shifted in a systematic way during traversal of the field, moving progressively forward on each theta cycle. This precession of the phase ranged from 100 degrees to 355 degrees in different cells. The effect appeared to be due to the fact that individual cells had a higher interburst rate than the theta frequency. The phase was highly correlated with spatial location and less well correlated with temporal aspects of behavior, such as the time after place field entry. These results have implications for several aspects of hippocampal function. First, by using the phase relationship as well as the firing rate, place cells can improve the accuracy of place coding. Second, the characteristics of the phase shift constrain the models that define the construction of place fields. Third, the results restrict the temporal and spatial circumstances under which synapses in the hippocampus could be modified.
在自由活动大鼠的海马体中,许多复杂棘波细胞主要与动物在环境中的位置相关(位置细胞)。相比之下,海马体脑电图的节律性波(7 - 12赫兹)的θ模式与一类改变大鼠在环境中位置的运动相关性更好。在穿过位置野的运动过程中,复杂棘波细胞常常以爆发模式放电,爆发间期频率与同时出现的脑电图θ频率处于同一范围。本研究考察了位置细胞放电时θ波的相位。研究发现,当大鼠进入位置野时,放电始终在特定相位开始,但在穿过位置野的过程中会以一种系统的方式发生偏移,在每个θ周期中逐渐向前移动。不同细胞的这种相位进动范围在100度到355度之间。这种效应似乎是由于单个细胞的爆发间期频率高于θ频率。该相位与空间位置高度相关,而与行为的时间方面(如进入位置野后的时间)相关性较差。这些结果对海马体功能的多个方面具有启示意义。首先,通过利用相位关系以及放电频率,位置细胞可以提高位置编码的准确性。其次,相位偏移的特征限制了定义位置野构建的模型。第三,这些结果限制了海马体中突触可能被修饰的时间和空间条件。