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通过刺激中脑运动区产生的虚构运动过程中运动神经元输入电阻的变化。

Motoneuron input-resistance changes during fictive locomotion produced by stimulation of the mesencephalic locomotor region.

作者信息

Shefchyk S J, Jordan L M

出版信息

J Neurophysiol. 1985 Nov;54(5):1101-8. doi: 10.1152/jn.1985.54.5.1101.

Abstract

Input-resistance changes during fictive locomotion were monitored in a variety of extensor and flexor hindlimb alpha-motoneurons in precollicular, postmammillary decerebrate cats induced to "walk" by electrical stimulation of the mesencephalic locomotor region (MLR). Using intracellular recording techniques and injected hyperpolarizing current pulses, the changes in the motoneuron input resistance recorded at the motoneuron soma were examined during nonlocomoting control periods as well as during the depolarized and hyperpolarized phases of the membrane potential oscillations (locomotor drive potentials, or LDPs) of fictive locomotion. In 28 of the 52 motoneurons examined, no change in the input resistance between the control and locomotor periods was observed. The remainder of the cells displayed a decrease (less than 20%) in input resistance when fictive stepping commenced. Over 80% of all the motoneurons depolarized (mean depolarization 4 mV), whereas only one LG motoneuron hyperpolarized (2 mV) with the onset of stimulation of the MLR. The remaining motoneurons did not display such changes. In 43 out of 52 motoneurons examined, no significant change in the input resistance could be observed between the depolarized and hyperpolarized phases of the step cycle. A decrease in the input resistance during the depolarized phase of the LDP was observed in four LG motoneurons, whereas five other motoneurons (2 LG, 1 TA, 1 PB, and 1 ST) displayed an increased input resistance during the depolarized phase compared with the hyperpolarized phase of locomotion. The data are consistent with the presence of an excitatory synaptic input alternating with an inhibitory input to the motoneuron during the fictive step cycle.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在中脑运动区(MLR)电刺激诱导“行走”的乳头体后去大脑猫的各种伸肌和屈肌后肢α运动神经元中,监测了虚构运动期间的输入电阻变化。使用细胞内记录技术并注入超极化电流脉冲,在非运动控制期以及虚构运动的膜电位振荡(运动驱动电位,或LDP)的去极化和超极化阶段,检查运动神经元胞体记录的运动神经元输入电阻变化。在检查的52个运动神经元中的28个中,未观察到对照期和运动期之间输入电阻的变化。其余细胞在虚构踏步开始时显示输入电阻降低(小于20%)。在所有运动神经元中,超过80%去极化(平均去极化4 mV),而在MLR刺激开始时,只有一个LG运动神经元超极化(2 mV)。其余运动神经元未显示此类变化。在检查的52个运动神经元中的43个中,在步周期的去极化和超极化阶段之间未观察到输入电阻的显著变化。在四个LG运动神经元中观察到LDP去极化阶段输入电阻降低,而与运动的超极化阶段相比,其他五个运动神经元(2个LG、1个TA、1个PB和1个ST)在去极化阶段显示输入电阻增加。这些数据与在虚构步周期中运动神经元存在兴奋性突触输入与抑制性输入交替一致。(摘要截断于250字)

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