Destexhe A, Babloyantz A, Sejnowski T J
Howard Hughes Medical Institute, Computational Neurobiology, Laboratory, La Jolla, California 92037.
Biophys J. 1993 Oct;65(4):1538-52. doi: 10.1016/S0006-3495(93)81190-1.
The oscillatory properties of single thalamocortical neurons were investigated by using a Hodgkin-Huxley-like model that included Ca2+ diffusion, the low-threshold Ca2+ current (lT) and the hyperpolarization-activated inward current (lh). lh was modeled by double activation kinetics regulated by intracellular Ca2+. The model exhibited waxing and waning oscillations consisting of 1-25-s bursts of slow oscillations (3.5-4 Hz) separated by long silent periods (4-20 s). During the oscillatory phase, the entry of Ca2+ progressively shifted the activation function of lh, terminating the oscillations. A similar type of waxing and waning oscillation was also observed, in the absence of Ca2+ regulation of lh, from the combination of lT, lh, and a slow K+ current. Singular approximation showed that for both models, the activation variables of lh controlled the dynamics of thalamocortical cells. Dynamical analysis of the system in a phase plane diagram showed that waxing and waning oscillations arose when lh entrained the system alternately between stationary and oscillating branches.
通过使用一个类似霍奇金-赫胥黎模型来研究单个丘脑皮质神经元的振荡特性,该模型包括Ca2+扩散、低阈值Ca2+电流(lT)和超极化激活内向电流(lh)。lh由细胞内Ca2+调节的双激活动力学建模。该模型表现出强弱振荡,由1至25秒的慢振荡(3.5至4赫兹)爆发组成,中间间隔长的静息期(4至20秒)。在振荡阶段,Ca2+的进入逐渐改变lh的激活函数,从而终止振荡。在没有Ca2+对lh调节的情况下,从lT、lh和慢K+电流的组合中也观察到了类似类型的强弱振荡。奇异近似表明,对于这两个模型,lh的激活变量控制着丘脑皮质细胞的动力学。在相平面图中对系统进行动力学分析表明,当lh使系统在静止分支和振荡分支之间交替时,就会出现强弱振荡。