Schmid Gerhard, Hänggi Peter
Institut für Physik, Universität Augsburg, Theoretische Physik I, D-86135 Augsburg, Germany.
Math Biosci. 2007 Jun;207(2):235-45. doi: 10.1016/j.mbs.2006.08.024. Epub 2006 Sep 7.
The influence of intrinsic channel noise on the spiking activity of excitable membrane patches is studied by use of a stochastic generalization of the Hodgkin-Huxley model. Internal noise stemming from the stochastic dynamics of individual ion channels does affect the electric properties of the cell-membrane patches. There exists an optimal size of the membrane patch for which the internal noise alone can cause a nearly regular spontaneous generation of action potentials. We consider the influence of intrinsic channel noise in presence of a constant and an oscillatory current driving for both, the mean interspike interval and the phenomenon of coherence resonance for neuronal spiking. Given small membrane patches, implying that channel noise dominates the excitable dynamics, we find the phenomenon of intrinsic coherence resonance. In this case, the relatively regular spiking behavior becomes essentially independent of an applied stimulus. We observed, however, the occurrence of a skipping of supra-threshold input events due to channel noise for intermediate patch sizes. This effect consequently reduces the overall coherence of the spiking.
通过对霍奇金 - 赫胥黎模型进行随机推广,研究了内在通道噪声对可兴奋膜片发放活动的影响。源于单个离子通道随机动力学的内部噪声确实会影响细胞膜片的电学性质。存在一个最优的膜片尺寸,仅内部噪声就能导致动作电位近乎规则地自发产生。我们考虑在存在恒定电流驱动和振荡电流驱动的情况下,内在通道噪声对神经元发放的平均峰峰间期和相干共振现象的影响。对于小的膜片,这意味着通道噪声主导了可兴奋动力学,我们发现了内在相干共振现象。在这种情况下,相对规则的发放行为基本上变得与施加的刺激无关。然而,我们观察到,对于中等尺寸的膜片,由于通道噪声会出现阈上输入事件的跳过。因此,这种效应降低了发放的整体相干性。