首页> 美国卫生研究院文献>The Journal of Physiology >Electrophysiology of mammalian inferior olivary neurones in vitro. Different types of voltage-dependent ionic conductances.
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Electrophysiology of mammalian inferior olivary neurones in vitro. Different types of voltage-dependent ionic conductances.

机译:哺乳动物下橄榄神经元的体外电生理。不同类型的电压相关离子电导。

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摘要

The electrophysiological properties of guinea-pig inferior olivary (I.O.) cells have been studied in an in vitro brain stem slice preparation. 1. Intracellular recordings from 185 neurones in this nucleus reveal that antidromic, orthodromic or direct stimulation generates action potentials consisting of a fast spike followed by an after-depolarizing potential (ADP). The ADP had an amplitude of 49 +/- 8 mV (mean +/- S.D.) and a duration which varied over a wide range with the level of depolarization. This ADP is followed by an after-hyperpolarizing potential (AHP) having an amplitude of 12 +/- 3 mV (mean +/- S.D.) from rest and lasting up to 250 msec. The AHP shows a rebound depolarization wave. 2. Synaptic activation may be obtained by peri-olivary stimulation with a bipolar electrode located in the immediate vicinity of the I.O. nucleus. These potentials are a mixture of depolarizing and hyperpolarizing synaptic events which can be reversed by direct membrane polarization. 3. Addition of tetrodotoxin (TTX) to the bath, or removal of extracellular Na, abolishes the fast initial action potential but does not modify the ADP or the AHP. Blockage of Ca conductance by Co, Mn, Cd or D600, or replacement of Ca by Mg, abolishes the ADP--AHP sequence. 4. Hyperpolarization of the neurone uncovers a low-threshold Ca conductance which is inactivated at rest and has similar pharmacological properties to the ADP. This low-threshold spike plays a central role in the rebound potential following the AHP. 5. Simultaneous impalement of I.O. neurone pairs demonstrated the presence of electrotonic coupling between neurones, which is especially prominent in the medial accessory olive.
机译:豚鼠下橄榄(I.O.)细胞的电生理特性已在体外脑干切片制备中进行了研究。 1.该核中185个神经元的细胞内记录显示,抗drodro,正畸或直接刺激产生的动作电位包括快速加标和随后的去极化后电位(ADP)。 ADP的振幅为49 +/- 8 mV(平均+/- S.D.),持续时间随去极化水平在很大范围内变化。在此ADP之后是超极化后电位(AHP),其静止状态的振幅为12 +/- 3 mV(平均+/- S.D.),持续时间高达250毫秒。层次分析法显示出反弹去极化波。 2.突触激活可以通过在I.O紧邻的双极电极进行橄榄石周围刺激来实现。核。这些电位是去极化和超极化突触事件的混合物,可以通过直接膜极化来逆转。 3.向浴液中添加河豚毒素(TTX)或去除细胞外Na,可消除快速的初始作用潜能,但不会改变ADP或AHP。通过Co,Mn,Cd或D600阻止Ca电导,或用Mg替代Ca消除ADP-AHP序列。 4.神经元的超极化揭示了低阈值的Ca电导,该电导在静止时被灭活,并且具有与ADP相似的药理特性。在AHP之后,此低阈值峰值在反弹潜力中起着核心作用。 5.同时执行I.O.神经元对表明神经元之间存在电声耦合,这在内侧副橄榄中尤为突出。

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