Llinás R, Hess R
Proc Natl Acad Sci U S A. 1976 Jul;73(7):2520-3. doi: 10.1073/pnas.73.7.2520.
Electrophysiological evidence for the existence of dendritic spikes in the Purkinje cells of pigeon cerebellar cortex is presented. Intradendritic records indicate that the electroresponsive properties of the dendrites linger after voltage-dependent sodium and potassium conductances are reduced by superfusion of the cortex with Ringer's solution containing 20 mug/ml tetrodotoxin and 5 mM 3-aminopyridine. Dendritic spikes could be evoked, in the complete absence of activity from all cerebellar afferents and from the soma and axon of the Purkinje cells, by direct electrical activation of the surface of the cerebellar cortex or by intracellular injection of current via the recording electrode. The denritic electroresponsiveness was blocked by superfusion with 20 mM Mn2+ or Co2+. It is thus concluded that dendrites of Purkinje cells in birds are capable of generating calcium-dependent spikes. The possible role of such a calcium current in neuronal function is discussed.
本文提供了鸽子小脑皮质浦肯野细胞中存在树突棘的电生理证据。树突内记录表明,在用含20微克/毫升河豚毒素和5毫摩尔3 - 氨基吡啶的林格氏液灌注皮质,使电压依赖性钠和钾电导降低后,树突的电反应特性仍持续存在。在所有小脑传入纤维以及浦肯野细胞的胞体和轴突完全无活动的情况下,通过直接电刺激小脑皮质表面或经记录电极进行细胞内电流注入,可诱发树突棘。用20毫摩尔锰离子或钴离子灌注可阻断树突的电反应性。因此得出结论,鸟类浦肯野细胞的树突能够产生钙依赖性棘。本文还讨论了这种钙电流在神经元功能中的可能作用。