International School for Advanced Studies, Trieste, Italy.
PLoS One. 2007 May 9;2(5):e439. doi: 10.1371/journal.pone.0000439.
Most neuronal networks, even in the absence of external stimuli, produce spontaneous bursts of spikes separated by periods of reduced activity. The origin and functional role of these neuronal events are still unclear. The present work shows that the spontaneous activity of two very different networks, intact leech ganglia and dissociated cultures of rat hippocampal neurons, share several features. Indeed, in both networks: i) the inter-spike intervals distribution of the spontaneous firing of single neurons is either regular or periodic or bursting, with the fraction of bursting neurons depending on the network activity; ii) bursts of spontaneous spikes have the same broad distributions of size and duration; iii) the degree of correlated activity increases with the bin width, and the power spectrum of the network firing rate has a 1/f behavior at low frequencies, indicating the existence of long-range temporal correlations; iv) the activity of excitatory synaptic pathways mediated by NMDA receptors is necessary for the onset of the long-range correlations and for the presence of large bursts; v) blockage of inhibitory synaptic pathways mediated by GABA(A) receptors causes instead an increase in the correlation among neurons and leads to a burst distribution composed only of very small and very large bursts. These results suggest that the spontaneous electrical activity in neuronal networks with different architectures and functions can have very similar properties and common dynamics.
大多数神经元网络,即使在没有外部刺激的情况下,也会产生自发的尖峰爆发,爆发之间是活动减少的时期。这些神经元事件的起源和功能作用仍不清楚。本工作表明,两种非常不同的网络——完整的水蛭神经节和分离培养的大鼠海马神经元——的自发活动具有几个共同的特征。事实上,在这两种网络中:i)单个神经元自发放电的尖峰间间隔分布是规则的或周期性的或爆发性的,爆发性神经元的比例取决于网络活动;ii)自发尖峰爆发具有相同的大小和持续时间的宽分布;iii)相关活动程度随 bin 宽度增加而增加,网络发放率的功率谱在低频处呈 1/f 行为,表明存在长程时间相关性;iv)由 NMDA 受体介导的兴奋性突触通路的活动对于长程相关性的开始和大爆发的存在是必要的;v)GABA(A)受体介导的抑制性突触通路的阻断反而会导致神经元之间的相关性增加,并导致爆发分布仅由非常小和非常大的爆发组成。这些结果表明,具有不同结构和功能的神经元网络的自发电活动可能具有非常相似的特性和共同的动力学。