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Induced sharp wave-ripple complexes in the absence of synaptic inhibition in mouse hippocampal slices

机译:在小鼠海马切片中没有突触抑制的情况下诱导尖波波纹复合体

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摘要

The characteristic, behaviour-related network oscillations of the mammalian hippocampus (θ, γ and ripples) are accompanied by strongly phase-coupled action potentials in specific subsets of GABAergic interneurones. It has been suggested that the resulting phasic, repetitive inhibition shapes rhythmic coherent activity of the neuronal network. Here, we examined whether synaptic inhibition entrains ∼200 Hz network ripples by applying the GABAA receptor antagonist gabazine to CA1 minislices of mouse hippocampus. Gabazine blocked spontaneously occurring sharp wave–ripple (SPW–R) activity. However, local application of KCl to the dendritic layer elicited excitatory sharp waves on which ∼200 Hz ripple oscillations were superimposed with equal temporal properties of native SPW–R. The activity also persisted in the additional presence of blockers of glutamatergic synaptic transmission. In contrast, synchrony was largely abolished after addition of gap junction blockers. Thus, GABAergic transmission appears to be involved in the generation of sharp waves but phasic inhibition is no prerequisite for the precise synchronization of hippocampal neurones during high-frequency oscillations at ∼200 Hz. Gap junctions on the other hand seem to be necessary to orchestrate coordinated activity within the ripple frequency domain.
机译:哺乳动物海马的特征,与行为有关的网络振荡(θ,γ和波纹)伴随着在GABA能级神经元的特定子集中强烈的相位耦合动作电位。已经提出,所产生的阶段性,重复性抑制作用会影响神经网络的节律性连贯活动。在这里,我们检查了通过将GABAA受体拮抗剂gabazine应用于小鼠海马CA1小切片,突触抑制是否会引起〜200 Hz网络纹波。加巴嗪阻断了自发发生的尖波波纹(SPW–R)活动。但是,将KCl局部应用到树突层会引起激波,在激波上〜200 Hz的波纹振荡与天然SPW–R具有相同的时间特性。该活性还在谷氨酸能突触传递阻滞剂的另外存在下持续存在。相比之下,添加间隙连接阻滞剂后,同步性基本消失。因此,GABA能传递似乎参与了尖波的产生,但是在200 Hz左右的高频振荡过程中,相位抑制并不是海马神经元精确同步的先决条件。另一方面,为了在纹波频率域内协调协调的活动,似乎需要间隙连接。

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