论文标题
由于体内稳态自我组织的准临界动力学而引起的突触平衡
Synaptic balance due to homeostatically self-organized quasicritical dynamics
论文作者
论文摘要
最近的实验表明,突触平衡的体内平衡调节导致视觉系统恢复和维持幂律雪崩的状态。在这里,我们研究兴奋性/抑制(E/I)平均场神经元网络,该网络与幂律雪崩和突触平衡具有关键点。当添加抑制性突触中的短期抑郁和触发阈值适应时,系统徘徊在临界点。这种体内稳态自组织的准关键(SOQC)动力学会以快速的时间尺度产生E/I突触电流取消,从而导致波动驱动的异步 - IRROCHIRONOUS-IRROCULAN(AI)触发。我们介绍模型的全相图,而没有适应性改变外部输入与突触耦合。该系统具有尖峰模式的丰富动力学曲目:同步常规(SR),异步常规(AR),同步不规则(SI),缓慢振荡(SO)和AI。它还呈现突触电流的动态平衡,因为抑制电流试图随着时间的推移来补偿兴奋电流,从而导致两者都用外部输入线性地缩放。因此,我们的模型统一了关于皮质自发活动的两种不同的观点:关键的雪崩和波动驱动的AI发射是由SOQC体内稳态适应引起的,并且确实是同一硬币的两个方面。
Recent experiments suggested that homeostatic regulation of synaptic balance leads the visual system to recover and maintain a regime of power-law avalanches. Here we study an excitatory/inhibitory (E/I) mean-field neuronal network that has a critical point with power-law avalanches and synaptic balance. When short term depression in inhibitory synapses and firing threshold adaptation are added, the system hovers around the critical point. This homeostatically self-organized quasi-critical (SOqC) dynamics generates E/I synaptic current cancellation in fast time scales, causing fluctuation-driven asynchronous-irregular (AI) firing. We present the full phase diagram of the model without adaptation varying external input versus synaptic coupling. This system has a rich dynamical repertoire of spiking patterns: synchronous regular (SR), asynchronous regular (AR), synchronous irregular (SI), slow oscillations (SO) and AI. It also presents dynamic balance of synaptic currents, since inhibitory currents try and compensate excitatory currents over time, resulting in both of them scaling linearly with external input. Our model thus unifies two different perspectives on cortical spontaneous activity: both critical avalanches and fluctuation-driven AI firing arise from SOqC homeostatic adaptation, and are indeed two sides of the same coin.