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首页> 外文期刊>Neurobiology of learning and memory >Coupling of prefrontal gamma amplitude and theta phase is strengthened in trace eyeblink conditioning.
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Coupling of prefrontal gamma amplitude and theta phase is strengthened in trace eyeblink conditioning.

机译:前额线γ幅值和θ相的耦合在痕迹眨眼条件下得到加强。

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摘要

Trace eyeblink conditioning requires animals to associate a neutral stimulus (CS) and an aversive periorbital shock (US) that occurred moment later. Acquisition in this conditioning depends on several forebrain regions including the hippocampus, medial prefrontal, and entorhinal cortices in addition to the cerebellum. Activities of single and population neurons in these regions show several patterns of change with the conditioning. For example, the power and synchronization of theta oscillations are correlated with the rate of acquisition. Yet, little is known about how neuronal oscillations at other frequency bands change with the conditioning. The present study examined changes in gamma oscillations, which are typically associated with spiking activity of individual cells. We found that after CS offset the power of gamma oscillations at 35-45 Hz fluctuated at about 7 Hz. This rhythmic fluctuation of gamma power was observed in all three regions and locked to local theta oscillations at 4-8 Hz. Furthermore, over the course of 10 days of acquisition sessions, the coupling of gamma power and theta phase became stronger in the medial prefrontal cortex while it did not change in the hippocampus or lateral entorhinal cortex. Neither theta nor gamma power in any of the regions significantly changed across sessions, rejecting a possibility that the observed increase in prefrontal theta-gamma coupling was secondary to an increase in theta or gamma power. The theta-gamma coupling between different regions did not significantly change across sessions. These results suggest that prefrontal gamma oscillations become more effectively coordinated with concurrent theta oscillations in trace eyeblink conditioning. This may result in a stronger impact of prefrontal neuronal firing responses to the CS on the processing in down-stream regions, such as the lateral entorhinal cortex and/or pontine nuclei.
机译:痕量眨眼调节需要动物将中性刺激(CS)与稍后发生的厌恶性眼眶周围休克(US)联系起来。在这种条件下的采集取决于除小脑外的几个前脑区域,包括海马,前额叶内侧和内嗅皮质。在这些区域中,单个神经元和群体神经元的活动显示出几种随条件变化的模式。例如,θ振荡的功率和同步与获取速率相关。然而,关于其他频带的神经元振荡如何随条件变化而知之甚少。本研究检查了γ振荡的变化,该变化通常与单个细胞的尖峰活动有关。我们发现,在CS偏移之后,35-45 Hz的伽马振荡功率在大约7 Hz处波动。在所有三个区域中都观察到这种伽马功率的节奏波动,并锁定在4-8 Hz的局部theta振荡。此外,在10天的获取过程中,内侧前额叶皮层中γ功率和θ相的耦合变得更强,而在海马区或外侧内嗅皮层中,γ相和θ相的耦合没有改变。在任何区域中,θ和γ功率均无明显变化,从而排除了观察到的前额叶θ-γ耦合增加仅次于θ或γ功率增加的可能性。在整个会议期间,不同区域之间的θ-γ耦合没有显着变化。这些结果表明,前额叶伽马振荡变得更有效地与痕量眨眼条件下同时发生的θ振荡相协调。这可能导致前额叶神经元对CS的放电反应对下游区域(如外侧内嗅皮层和/或桥脑核)的处理产生更大的影响。

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