Stuart G, Häusser M
Abteilung Zellphysiologie, Max-Planck-Institut für medizinische Forschung, Heidelberg, Germany.
Neuron. 1994 Sep;13(3):703-12. doi: 10.1016/0896-6273(94)90037-x.
Simultaneous whole-cell recordings were made from the soma and dendrites of cerebellar Purkinje cells in rat brain slices. Sodium action potentials, evoked by either depolarizing current pulses or synaptic stimulation of parallel or climbing fibers, always occurred first at the soma and decreased in amplitude with increasing distance into the dendrites. Simultaneous somatic and axonal recordings showed that these action potentials were initiated in the axon. Outside-out patches excised from the soma and dendrites revealed that the sodium channel current density decreased with distance from the soma. Consistent with this finding, comparable attenuation was observed for evoked action potentials and simulated action potential waveforms when sodium channels were blocked. These results show that sodium action potentials in cerebellar Purkinje cells are initiated in the axon and then spread passively into the dendritic tree.
在大鼠脑片上,对小脑浦肯野细胞的胞体和树突进行了同步全细胞记录。由去极化电流脉冲或平行纤维或攀缘纤维的突触刺激诱发的钠动作电位,总是首先出现在胞体,并随着向树突深入距离的增加而振幅减小。同时进行的胞体和轴突记录表明,这些动作电位是在轴突中起始的。从胞体和树突上切下的外侧膜片显示,钠通道电流密度随着距胞体距离的增加而降低。与这一发现一致,当钠通道被阻断时,诱发动作电位和模拟动作电位波形也观察到了类似的衰减。这些结果表明,小脑浦肯野细胞中的钠动作电位在轴突中起始,然后被动扩散到树突树中。