Interdisciplinary Institute for Neuroscience, CNRS UMR 5297, Bordeaux, France; University of Bordeaux, 33000 Bordeaux, France.
Interdisciplinary Institute for Neuroscience, CNRS UMR 5297, Bordeaux, France; University of Bordeaux, 33000 Bordeaux, France.
Cell Rep. 2020 Jul 7;32(1):107868. doi: 10.1016/j.celrep.2020.107868.
Brain states modulate the membrane potential dynamics of neurons, influencing the functional repertoire of the network. Pyramidal cells (PCs) in the hippocampal CA3 are necessary for rapid memory encoding, which preferentially occurs during exploratory behavior in the high-arousal theta state. However, the relationship between the membrane potential dynamics of CA3 PCs and theta has not been explored. Here we characterize the changes in the membrane potential of PCs in relation to theta using electrophysiological recordings in awake mice. During theta, most PCs behave in a stereotypical manner, consistently hyperpolarizing time-locked to the duration of theta. Additionally, PCs display lower membrane potential variance and a reduced firing rate. In contrast, during large irregular activity, PCs show heterogeneous changes in membrane potential. This suggests coordinated hyperpolarization of PCs during theta, possibly caused by increased inhibition. This could lead to a higher signal-to-noise ratio in the small population of PCs active during theta, as observed in ensemble recordings.
脑状态调节神经元的膜电位动力学,影响网络的功能范围。海马 CA3 中的锥体神经元(PCs)对于快速记忆编码是必需的,而这种编码在高唤醒θ波状态下的探索性行为中优先发生。然而,CA3 PCs 的膜电位动力学与θ波之间的关系尚未得到探索。在这里,我们使用清醒小鼠的电生理记录来描述与θ波相关的 PC 膜电位变化。在θ波期间,大多数 PCs 以一种刻板的方式表现出来,与θ波的持续时间一致地超极化。此外,PCs 表现出较低的膜电位方差和降低的放电率。相比之下,在大不规则活动期间,PCs 的膜电位会发生异质变化。这表明在θ波期间,PCs 可能会受到抑制的增加而发生协调的超极化。这可能会导致在θ波期间活动的少量 PC 中产生更高的信噪比,就像在群体记录中观察到的那样。