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锁相同步的海马 theta 波段反应与辨别性眨眼条件反射反应有关。

Phase-locked hippocampal theta-band responses are related to discriminative eyeblink conditioned responding.

机构信息

Department of Psychology, P.O. Box 35, FI-40014 University of Jyväskylä, Finland.

出版信息

Behav Brain Res. 2013 Nov 1;256:575-9. doi: 10.1016/j.bbr.2013.09.011. Epub 2013 Sep 9.

DOI:10.1016/j.bbr.2013.09.011
PMID:24029698
Abstract

Hippocampal electrophysiological oscillatory activity is undoubtedly related to learning and memory. The relative power of spontaneously occurring hippocampal theta (∼4-8 Hz) oscillations predicts how fast and how well an animal will learn: more theta predicts faster acquisition of the conditioned response in eyeblink conditioning in both rats and rabbits. Here, our aim was to study how hippocampal theta-band responses to conditioned stimuli elicited during very-long delay discrimination eyeblink conditioning relate to the accompanying conditioned behavior. We trained adult male New Zealand White rabbits using 1500-ms auditory stimuli as conditioned stimuli and a 100-ms airpuff as an unconditioned stimulus. The reinforced conditioned stimulus overlapped and co-terminated with the unconditioned stimulus whereas the non-reinforced conditioned stimulus was always presented alone. Consistent with previous results, hippocampal theta-band responses to the conditioned stimuli diminished in amplitude across training. Interestingly, hippocampal theta-band responses were most consistently time-locked when a well-trained animal failed to suppress behavioral learned responses to the non-reinforced conditioned stimulus. We suggest that phase-locking of hippocampal theta-band oscillations in response to external stimuli reflects retrieval of the dominant memory trace (adaptive or not) along with initiating the most prominent action scheme related to that memory trace.

摘要

海马体电生理振荡活动无疑与学习和记忆有关。自发出现的海马体θ(∼4-8 Hz)振荡的相对功率可以预测动物学习的速度和效果:θ越多,在大鼠和兔子的眨眼条件反射中,条件反应的获得速度就越快。在这里,我们的目的是研究在非常长的延迟辨别眨眼条件反射过程中,海马体θ频段对条件刺激的反应与伴随的条件行为之间的关系。我们使用 1500 ms 的听觉刺激作为条件刺激,用 100 ms 的空气喷流作为非条件刺激,对成年雄性新西兰白兔进行训练。强化的条件刺激与非条件刺激重叠并同时结束,而非强化的条件刺激则始终单独呈现。与先前的结果一致,海马体θ频段对条件刺激的反应幅度随着训练的进行而逐渐减小。有趣的是,当一只训练有素的动物未能抑制对非强化条件刺激的习得反应时,海马体θ频段的反应最一致地与时间锁相。我们认为,海马体θ频段对外部刺激的锁相振荡反映了主导记忆痕迹(适应或不适应)的检索,同时启动了与该记忆痕迹最相关的显著动作方案。

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