Jiang Z G, Dun N J
Brain Res. 1981 Dec 14;229(1):203-8. doi: 10.1016/0006-8993(81)90758-7.
When the membrane potential was manually clamped, the non-cholinergic excitatory potential was associated with either a sustained increase, an initial decrease followed by a prolonged increase or no apparent change in neuronal input resistance. In the majority of neurons studied, the amplitude of non-cholinergic depolarization was augmented upon conditioning hyperpolarization, whereas it was attenuated in a low Na solution. The results are consistent with the suggestion that the non-cholinergic depolarization may be generated by a change of multiple conductances that may include GNa activation and GK inactivation.
当手动钳制膜电位时,非胆碱能兴奋性电位与神经元输入电阻的持续增加、先降低后持续增加或无明显变化相关。在大多数所研究的神经元中,非胆碱能去极化的幅度在条件性超极化时增大,而在低钠溶液中则减小。这些结果与以下观点一致,即非胆碱能去极化可能由多种电导的变化产生,这些电导变化可能包括钠电导激活和钾电导失活。