Montefusco-Siegmund Rodrigo, Leonard Timothy K, Hoffman Kari L
Centre for Vision Research, York University, Toronto, Ontario, Canada.
Department of Psychology, Centre for Vision Research, York University, Toronto, Ontario, Canada.
Hippocampus. 2017 Apr;27(4):425-434. doi: 10.1002/hipo.22702. Epub 2017 Feb 17.
Memory for scenes is supported by the hippocampus, among other interconnected structures, but the neural mechanisms related to this process are not well understood. To assess the role of the hippocampus in memory-guided scene search, we recorded local field potentials and multiunit activity from the hippocampus of macaques as they performed goal-directed search tasks using natural scenes. We additionally measured pupil size during scene presentation, which in humans is modulated by recognition memory. We found that both pupil dilation and search efficiency accompanied scene repetition, thereby indicating memory for scenes. Neural correlates included a brief increase in hippocampal multiunit activity and a sustained synchronization of unit activity to gamma band oscillations (50-70 Hz). The repetition effects on hippocampal gamma synchronization occurred when pupils were most dilated, suggesting an interaction between aroused, attentive processing and hippocampal correlates of recognition memory. These results suggest that the hippocampus may support memory-guided visual search through enhanced local gamma synchrony. © 2016 Wiley Periodicals, Inc.
除其他相互连接的结构外,海马体支持对场景的记忆,但与这一过程相关的神经机制尚未得到充分理解。为了评估海马体在记忆引导的场景搜索中的作用,我们在猕猴执行使用自然场景的目标导向搜索任务时,记录了它们海马体的局部场电位和多单元活动。我们还在场景呈现期间测量了瞳孔大小,在人类中,瞳孔大小会受到识别记忆的调节。我们发现,瞳孔扩张和搜索效率都伴随着场景重复,从而表明对场景有记忆。神经关联包括海马体多单元活动的短暂增加以及单元活动与伽马波段振荡(50 - 70赫兹)的持续同步。当瞳孔扩张到最大时,会出现对海马体伽马同步的重复效应,这表明唤醒的、专注的处理过程与识别记忆的海马体关联之间存在相互作用。这些结果表明,海马体可能通过增强局部伽马同步来支持记忆引导的视觉搜索。© 2016威利期刊公司