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Cerebellar theta oscillations are synchronized during hippocampal theta-contingent trace conditioning

机译:小脑θ振荡在海马theta-偶然痕量调节过程中是同步的

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摘要

The hippocampus and cerebellum are critically involved in trace eyeblink classical conditioning (EBCC). The mechanisms underlying the hippocampal-cerebellar interaction during this task are not well-understood, although hippocampal theta (3–7 Hz) oscillations are known to reflect a favorable state for EBCC. Two groups of rabbits received trace EBCC in which a brain-computer interface administered trials in either the explicit presence or absence of naturally occurring hippocampal theta. A high percentage of robust theta led to a striking enhancement of learning accompanied by rhythmic theta-band (6–7 Hz) oscillations in the interpositus nucleus (IPN) and cerebellar cortex that were time-locked both to hippocampal rhythms and sensory stimuli during training. Rhythmic oscillations were absent in the cerebellum of the non-theta group. These data strongly suggest a beneficial impact of theta-based coordination of hippocampus and cerebellum and, importantly, demonstrate that hippocampal theta oscillations can be used to index, and perhaps modulate, the functional properties of the cerebellum.
机译:海马和小脑严重参与痕量眨眼经典调节(EBCC)。尽管众所周知,海马θ(3-7 Hz)振荡反映了EBCC的良好状态,但这项任务中海马-小脑相互作用的潜在机制尚不清楚。两组兔子接受了痕量EBCC,其中在明确存在或不存在自然存在的海马体theta的情况下,人机界面进行试验。高百分比的稳健theta导致学习功能显着增强,同时在训练过程中伴随着间质层间核(IPN)和小脑皮质的节律性theta波段(6–7 Hz)振荡,这些振荡均与海马节律和感觉刺激时间锁定。非theta组小脑无节律性振荡。这些数据有力地表明了基于theta的海马和小脑协调性的有益影响,并且重要的是,证明了海马theta振荡可用于索引和可能调节小脑的功能特性。

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