Shirahata T
Laboratory of Pharmaceutics, Kagawa School of Pharmaceutical Sciences, Tokushima Bunri University, 1314-1, Shido, Sanuki Kagawa 769-2193, Japan.
Acta Biol Hung. 2012 Sep;63(3):313-20. doi: 10.1556/ABiol.63.2012.3.1.
Pyramidal cells in the electrosensory lateral line lobe (ELL) of weakly electric fish produce burst discharge. A Hodgkin-Huxley-type model, called ghostburster, consisting of two compartments (soma and dendrite) reproduces ELL pyramidal cell bursting observed in vitro. A previous study analyzed the ghostburster by treating Is and gDr,d as bifurcation parameters (Is: current injected into the somatic compartment and gDr,d: maximal conductance of the delayed rectifying potassium current in the dendritic compartment) and indicated that when both Is and gDr,d are set at particular values, the ghostburster shows a codimension-two bifurcation at which both saddle-node bifurcation of fixed points and saddle-node bifurcation of limit cycles occur simultaneously. In the present study, the ghostburster was investigated to clarify the bursting that occurred at gDr,d values smaller than that at the codimension-two bifurcation. Based on the number of spikes per burst, various burst patterns were observed depending on the (Is, gDr,d) values. Depending on the (Is, gDr,d) values, the burst trajectory in a phase space of the ghostburster showed either a high or a low degree of periodicity. Compared to the previous study, the present findings contribute to a more detailed understanding of ghostburster bursting.
弱电鱼的电感觉侧线叶(ELL)中的锥体细胞产生爆发式放电。一种由两个部分(胞体和树突)组成的霍奇金-赫胥黎型模型,称为“幽灵爆发器”,能够重现体外观察到的ELL锥体细胞爆发。先前的一项研究通过将(I_s)和(g_{Dr,d})作为分岔参数((I_s):注入胞体部分的电流,(g_{Dr,d}):树突部分延迟整流钾电流的最大电导)来分析“幽灵爆发器”,并表明当(I_s)和(g_{Dr,d})都设定为特定值时,“幽灵爆发器”会出现一种二维分岔,即不动点的鞍结分岔和极限环的鞍结分岔同时发生。在本研究中,对“幽灵爆发器”进行了研究,以阐明在(g_{Dr,d})值小于二维分岔时所发生的爆发。根据每个爆发的尖峰数量,观察到了取决于((I_s, g_{Dr,d}))值的各种爆发模式。根据((I_s, g_{Dr,d}))值,“幽灵爆发器”相空间中的爆发轨迹显示出高或低程度的周期性。与先前的研究相比,本研究结果有助于更详细地理解“幽灵爆发器”的爆发。