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体外成年小鼠梨状皮层中生理钙浓度揭示β和γ频段显著易化作用

Prominent facilitation at beta and gamma frequency range revealed with physiological calcium concentration in adult mouse piriform cortex in vitro.

作者信息

Gleizes Marie, Perrier Simon P, Fonta Caroline, Nowak Lionel G

机构信息

Centre de Recherche Cerveau et Cognition, Université de Toulouse, Toulouse, France.

Unité Mixte de Recherche 5549, Centre National de la Recherche Scientifique, Toulouse, France.

出版信息

PLoS One. 2017 Aug 18;12(8):e0183246. doi: 10.1371/journal.pone.0183246. eCollection 2017.

Abstract

Neuronal activity is characterized by a diversity of oscillatory phenomena that are associated with multiple behavioral and cognitive processes, yet the functional consequences of these oscillations are not fully understood. Our aim was to determine whether and how these different oscillatory activities affect short-term synaptic plasticity (STP), using the olfactory system as a model. In response to odorant stimuli, the olfactory bulb displays a slow breathing rhythm as well as beta and gamma oscillations. Since the firing of olfactory bulb projecting neurons is phase-locked with beta and gamma oscillations, structures downstream from the olfactory bulb should be driven preferentially at these frequencies. We examined STP exhibited by olfactory bulb inputs in slices of adult mouse piriform cortex maintained in vitro in an in vivo-like ACSF (calcium concentration: 1.1 mM). We replaced the presynaptic neuronal firing rate by repeated electrical stimulation (frequency between 3.125 and 100 Hz) applied to the lateral olfactory tract. Our results revealed a considerable enhancement of postsynaptic response amplitude for stimulation frequencies in the beta and gamma range. A phenomenological model of STP fitted to the data suggests that the experimental results can be explained by the interplay between three mechanisms: a short-term facilitation mechanism (time constant ≈160 msec), and two short-term depression mechanisms (recovery time constants <20 msec and ≈140 msec). Increasing calcium concentration (2.2 mM) resulted in an increase in the time constant of facilitation and in a strengthening of the slowest depression mechanism. As a result, response enhancement was reduced and its peak shifted toward the low beta and alpha ranges while depression became predominant in the gamma band. Using environmental conditions corresponding to those that prevail in vivo, our study shows that STP in the lateral olfactory tract to layer Ia synapse allows amplification of olfactory bulb inputs at beta and gamma frequencies.

摘要

神经元活动的特征是存在多种振荡现象,这些现象与多种行为和认知过程相关,但这些振荡的功能后果尚未完全了解。我们的目的是使用嗅觉系统作为模型,确定这些不同的振荡活动是否以及如何影响短期突触可塑性(STP)。响应气味刺激时,嗅球会显示出缓慢的呼吸节律以及β和γ振荡。由于嗅球投射神经元的放电与β和γ振荡锁相,因此嗅球下游的结构应在这些频率下优先被驱动。我们在体外维持在类似体内的ACSF(钙浓度:1.1 mM)中的成年小鼠梨状皮质切片中,检查了嗅球输入所表现出的STP。我们通过对外侧嗅束施加重复电刺激(频率在3.125至100 Hz之间)来替代突触前神经元的放电率。我们的结果显示,在β和γ范围内的刺激频率下,突触后反应幅度有相当大的增强。拟合数据的STP现象学模型表明,实验结果可以由三种机制之间的相互作用来解释:一种短期易化机制(时间常数≈160毫秒)和两种短期抑制机制(恢复时间常数<20毫秒和≈140毫秒)。增加钙浓度(2.2 mM)会导致易化时间常数增加,并增强最慢的抑制机制。结果,反应增强减弱,其峰值向低β和α范围移动,而抑制在γ波段占主导地位。利用与体内普遍存在的环境条件相对应的条件,我们的研究表明,外侧嗅束到Ia层突触的STP允许在β和γ频率下放大嗅球输入。

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