Sakimoto Yuya, Sakata Shogo
Graduate School of Medicine, Yamaguchi University, Yamaguchi, Japan.
Graduate School of Integrated Arts and Sciences, Hiroshima University, Hiroshima, Japan.
Behav Brain Res. 2015 Sep 1;290:70-6. doi: 10.1016/j.bbr.2015.03.060. Epub 2015 Apr 27.
Although it has been shown that hippocampal theta power transiently declines during response inhibition in a simultaneous feature negative (FN: A+, AB-) task, observations of additional changes after this initial decline have been inconsistent across subjects. We hypothesized that the cause of these inconsistencies might be that variations in the learning speed for the FN task differentially affect the changes in hippocampal theta activity observed during the task. In this study, we classified rats into three groups (fast, intermediate, and slow FN-learning groups) based on the number of sessions required to complete learning of the FN task. We then examined whether there was a difference in hippocampal theta power among the fast, intermediate, and slow FN-learning groups, and rats that learned a simple discrimination task (SD group). We observed that compared to the SD group, the slow FN-learning group, but not the fast FN-learning group, showed an increase in hippocampal theta power. In addition, a transient decline of hippocampal theta power occurred in the fast FN-learning group, but not in the slow FN-learning group. These results indicate that the hippocampal theta activity during response inhibition in the FN task differed between fast- and slow-learning rats. Thus, we propose that a difference in learning speed affected hippocampal theta activity during response inhibition under a conflict state.
尽管已有研究表明,在同时进行的特征负性(FN:A+,AB-)任务的反应抑制过程中,海马θ波功率会短暂下降,但在此初始下降之后的其他变化在不同受试者之间的观察结果并不一致。我们推测,这些不一致的原因可能是FN任务学习速度的差异会对任务期间观察到的海马θ波活动变化产生不同影响。在本研究中,我们根据完成FN任务学习所需的实验次数,将大鼠分为三组(快速、中等和慢速FN学习组)。然后,我们检查了快速、中等和慢速FN学习组以及学习简单辨别任务的大鼠(SD组)之间海马θ波功率是否存在差异。我们观察到,与SD组相比,慢速FN学习组而非快速FN学习组的海马θ波功率增加。此外,快速FN学习组出现了海马θ波功率的短暂下降,而慢速FN学习组则没有。这些结果表明,在FN任务的反应抑制过程中,快速和慢速学习大鼠的海马θ波活动存在差异。因此,我们提出,学习速度的差异会影响冲突状态下反应抑制期间的海马θ波活动。