Postnova S, Wollweber B, Voigt K, Braun H
Laboratory of Neurodynamics, Institute of Physiology, University of Marburg, Deutschhausstr. 2, D-35037 Marburg, Germany.
Biosystems. 2007 May-Jun;89(1-3):135-42. doi: 10.1016/j.biosystems.2006.06.011. Epub 2006 Nov 12.
The effects of bi-directional gap junction coupling of two model neurons with subthreshold oscillations have been examined when the individual neurons are operating at different dynamical states either in the tonic or bursting firing mode. Our simulations indicate that intermediate coupling strengths mostly lead to highly variable, often chaotic impulse patterns whereas transition to completely synchronized activity at high coupling strengths is generally going along with transitions to regular limit cycle activity. The synchronized activity pattern, however, can be completely different from the original pattern of the uncoupled neurons.
当两个具有阈下振荡的模型神经元在不同动态状态下(即紧张性放电模式或爆发性放电模式)运行时,已对它们之间双向缝隙连接耦合的影响进行了研究。我们的模拟表明,中等耦合强度大多会导致高度可变、通常是混沌的脉冲模式,而在高耦合强度下向完全同步活动的转变通常伴随着向规则极限环活动的转变。然而,同步活动模式可能与未耦合神经元的原始模式完全不同。