School of Aerospace Engineering and Applied Mechanics, Tongji University, Shanghai, 200092 China.
Cogn Neurodyn. 2012 Dec;6(6):485-97. doi: 10.1007/s11571-012-9209-x. Epub 2012 Jun 14.
The stochastic firing patterns are simulated near saddle-node bifurcation on an invariant cycle corresponding to type I excitability in stochastic Morris-Lecar model. In absence of external periodic signal, the stochastic firing manifests continuous distribution in ISI histogram (ISIH), whose amplitude at first increases sharply and then decreases exponentially. In presence of the external periodic signal, stochastic firing patterns appear as two cases of integer multiple firing with multiple discrete peaks in ISIH. One manifests perfect exponential decay in all peaks and the other imperfect exponential decay except a lower first peak. These stochastic firing patterns simulated with or without external periodic signal can be demonstrated in the experiments on rat hippocampal CA1 pyramidal neurons. The exponential decay laws in the multiple peaks are also acquired using probability analysis method. The perfect decay law is determined by the independent characteristic within the firing while the imperfect decay law is from the inhibitory effect. In addition, the stochastic firing patterns corresponding to type I excitability are compared to those of type II excitability. The results not only reveal the dynamics of stochastic firing patterns with or without external signal corresponding to type I excitability, but also provide practical indicators to availably identify type I excitability.
在对应于 I 型兴奋性的不变环上,在鞍结分岔附近模拟随机点火模式。在没有外部周期信号的情况下,随机点火在 ISI 直方图 (ISIH) 中表现出连续分布,其幅度首先急剧增加,然后指数衰减。在存在外部周期信号的情况下,随机点火模式表现为整数倍点火的两种情况,ISIH 中有多个离散峰。一种表现为所有峰的完美指数衰减,另一种除了第一个较低的峰外表现为不完美的指数衰减。这些带有或不带有外部周期信号的随机点火模式可以在大鼠海马 CA1 锥体神经元的实验中得到证明。使用概率分析方法还获得了多个峰中的指数衰减规律。完美的衰减规律是由点火中的独立特征决定的,而不完美的衰减规律是由抑制作用决定的。此外,还比较了对应于 I 型兴奋性的随机点火模式与对应于 II 型兴奋性的随机点火模式。研究结果不仅揭示了对应于 I 型兴奋性的有或无外部信号的随机点火模式的动力学,还提供了有效的识别 I 型兴奋性的实用指标。