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首页> 外文期刊>The Journal of Physiology >State-dependent hyperpolarization of voltage threshold enhances motoneurone excitability during fictive locomotion in the cat.
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State-dependent hyperpolarization of voltage threshold enhances motoneurone excitability during fictive locomotion in the cat.

机译:电压阈值的状态依赖性超极化增强了猫虚构运动过程中运动神经元的兴奋性。

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Experiments were conducted on decerebrate adult cats to examine the effect of brainstem-evoked fictive locomotion on the threshold voltage (Vth) at which action potentials were initiated in hindlimb motoneurones. Measurements of the voltage threshold of the first spike evoked by intracellular injection of depolarizing ramp currents or square pulses were compared during control and fictive locomotor conditions. The sample of motoneurones included flexor and extensor motoneurones, and motoneurones with low and high rheobase currents. In all 38 motoneurones examined, action potentials were initiated at more hyperpolarized membrane potentials during fictive locomotion than in control conditions (mean hyperpolarization -8.0 +/- 5.5 mV; range -1.8 to -26.6 mV). Hyperpolarization of Vth occurred immediately at the onset of fictive locomotion and recovered in seconds (typically < 60 s) following the termination of locomotor activity. The Vth of spikes occurring spontaneously without intracellular current injection was also reduced during locomotion. Superimposition of rhythmic depolarizing current pulses on current ramps in the absence of locomotion did not lower Vth to the extent seen during fictive locomotion. We suggest that Vth hyperpolarization results from an as yet undetermined neuromodulatory process operating during locomotion and is not simply the result of the oscillations in membrane potential occurring during locomotion.The hyperpolarization of Vth for action potential initiation during locomotion is a state-dependent increase in motoneurone excitability. This Vth hyperpolarization may be a fundamental process in the generation of motoneurone activity during locomotion and perhaps other motor tasks.
机译:在无脑成年猫上进行了实验,以研究脑干诱发的虚构运动对阈电压(Vth)的影响,阈电压在此电压下启动后肢运动神经元。在控制和虚拟运动条件下,比较了通过细胞内注射去极化的斜坡电流或方波引起的第一个尖峰电压阈值的测量结果。运动神经元的样本包括屈肌和伸肌运动神经元,以及流变电流低和高的运动神经元。在所有检查过的38个运动神经元中,动作电位是在虚构运动期间以比控制条件更高的超极化膜电位开始的(平均超极化为-8.0 +/- 5.5 mV;范围为-1.8到-26.6 mV)。 Vth的超极化在虚拟运动开始时立即发生,并在运动活动终止后数秒(通常<60 s)内恢复。在运动过程中,未注射细胞内电流而自发发生的尖峰电压Vth也降低了。在没有运动的情况下,有节奏的去极化电流脉冲在电流斜坡上的叠加不会将Vth降低到虚拟运动期间看到的程度。我们认为Vth超极化是由运动过程中尚未确定的神经调节过程引起的,而不仅仅是运动过程中发生的膜电位振荡的结果。运动过程中动作电位引发的Vth超极化是运动神经元的状态依赖性增加兴奋性。这种Vth超极化可能是运动和其他运动任务期间产生运动神经元活动的基本过程。

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