Strüber Michael, Sauer Jonas-Frederic, Jonas Peter, Bartos Marlene
Physiologisches Institut I, Systemic and Cellular Neurophysiology, Albert-Ludwigs-Universität Freiburg, Hermann-Herder-Straße 7, 79104, Freiburg, Germany.
Spemann Graduate School of Biology and Medicine (SGBM), Albert-Ludwigs-Universität Freiburg, 79104, Freiburg, Germany.
Nat Commun. 2017 Oct 2;8(1):758. doi: 10.1038/s41467-017-00936-3.
Gamma oscillations (30-150 Hz) in neuronal networks are associated with the processing and recall of information. We measured local field potentials in the dentate gyrus of freely moving mice and found that gamma activity occurs in bursts, which are highly heterogeneous in their spatial extensions, ranging from focal to global coherent events. Synaptic communication among perisomatic-inhibitory interneurons (PIIs) is thought to play an important role in the generation of hippocampal gamma patterns. However, how neuronal circuits can generate synchronous oscillations at different spatial scales is unknown. We analyzed paired recordings in dentate gyrus slices and show that synaptic signaling at interneuron-interneuron synapses is distance dependent. Synaptic strength declines whereas the duration of inhibitory signals increases with axonal distance among interconnected PIIs. Using neuronal network modeling, we show that distance-dependent inhibition generates multiple highly synchronous focal gamma bursts allowing the network to process complex inputs in parallel in flexibly organized neuronal centers.Perisomatic-inhibitory interneurons (PIIs) contribute to the generation of gamma oscillations in the hippocampus. Here the authors demonstrate distance-dependent inhibition between PIIs in freely moving mice, and use computational analysis to show that distance-dependent inhibition supports the emergence of focal gamma bursts.
神经元网络中的伽马振荡(30 - 150赫兹)与信息的处理和回忆有关。我们测量了自由活动小鼠齿状回中的局部场电位,发现伽马活动以突发形式出现,其空间范围高度异质,从局部相干事件到全局相干事件不等。胞体周围抑制性中间神经元(PIIs)之间的突触通讯被认为在海马体伽马模式的产生中起重要作用。然而,神经元回路如何在不同空间尺度上产生同步振荡尚不清楚。我们分析了齿状回切片中的配对记录,并表明中间神经元 - 中间神经元突触处的突触信号传导是距离依赖性的。随着相互连接的PIIs之间轴突距离的增加,突触强度下降,而抑制信号的持续时间增加。使用神经元网络建模,我们表明距离依赖性抑制产生多个高度同步的局部伽马突发,使网络能够在灵活组织的神经元中心并行处理复杂输入。胞体周围抑制性中间神经元(PIIs)有助于海马体中伽马振荡的产生。在这里,作者展示了自由活动小鼠中PIIs之间的距离依赖性抑制,并使用计算分析表明距离依赖性抑制支持局部伽马突发的出现。