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体外海马γ振荡功率作为体内 CA3γ振荡强度和空间参照记忆的指标。

In vitro hippocampal gamma oscillation power as an index of in vivo CA3 gamma oscillation strength and spatial reference memory.

机构信息

Neuronal Networks Group, School of Clinical and Experimental Medicine, University of Birmingham, Birmingham B15 2TT, United Kingdom.

出版信息

Neurobiol Learn Mem. 2011 Mar;95(3):221-30. doi: 10.1016/j.nlm.2010.11.008. Epub 2010 Nov 18.

DOI:10.1016/j.nlm.2010.11.008
PMID:21093596
Abstract

Neuronal synchronisation at gamma frequencies (30-100 Hz) has been implicated in cognition and memory. Gamma oscillations can be studied in various in vitro models, but their in vivo validity and their relationship with reference memory remains to be proven. By using the natural variation of wild type C57bl/6J mice, we assessed the relationships between reference memory and gamma oscillations recorded in hippocampal area CA3 in vivo and in vitro. Local field potentials (LFPs) were recorded from area CA3 in behaviourally-characterised freely moving mice, after which hippocampal slices were prepared for recordings in vitro of spontaneous gamma oscillations and kainate-induced gamma oscillations in CA3. The gamma-band power of spontaneous oscillations in vitro correlated with that of CA3 LFP oscillations during inactive behavioural states. The gamma-band power of kainate-induced oscillations correlated with the activity-dependent increase in CA3 LFP gamma-band power in vivo. Kainate-induced gamma-band power correlated with Barnes circular platform performance and object location recognition, but not with object novelty recognition. Kainate-induced gamma-band power was larger in mice that recognised the aversive context, but did not correlate with passive avoidance delay. The correlations between behavioural and electrophysiological measures obtained from the same animals show that the gamma-generating capacity of the CA3 network in vitro is a useful index of in vivo gamma strength and supports an important role of CA3 gamma oscillations in spatial reference memory.

摘要

神经元在伽马频率(30-100Hz)下的同步活动被认为与认知和记忆有关。伽马振荡可以在各种体外模型中进行研究,但它们在体内的有效性及其与参考记忆的关系仍有待证明。通过利用野生型 C57bl/6J 小鼠的自然变异,我们评估了参考记忆与体内和体外海马 CA3 区记录的伽马振荡之间的关系。在行为特征明显的自由移动小鼠中,从 CA3 区记录局部场电位(LFPs),然后制备海马切片,以记录体外自发的伽马振荡和 CA3 中的红藻氨酸诱导的伽马振荡。体外自发振荡的伽马频带功率与非活动行为状态下 CA3 LFP 振荡的伽马频带功率相关。红藻氨酸诱导的振荡的伽马频带功率与体内 CA3 LFP 伽马频带功率的活动依赖性增加相关。红藻氨酸诱导的伽马频带功率与巴恩斯圆形平台性能和物体位置识别相关,但与物体新颖性识别无关。在识别厌恶环境的小鼠中,红藻氨酸诱导的伽马频带功率更大,但与被动回避延迟无关。来自同一动物的行为和电生理测量之间的相关性表明,CA3 网络在体外的伽马产生能力是体内伽马强度的有用指标,并支持 CA3 伽马振荡在空间参考记忆中的重要作用。

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