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A comparison of peripheral and rubrospinal synaptic input to slow and fast twitch motor units of triceps surae

机译:肱三头肌的慢速和快速抽搐运动单位的周围神经和突触神经突触输入的比较

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摘要

1. Post-synaptic potentials (PSPs) evoked by electrical stimulation of a variety of input systems have been compared in triceps surae motoneurones innervating slow and fast muscle units, the speed of contraction of which was also determined.2. Stimulation of high threshold afferents in both flexor and extensor muscle nerves, and of joint afferents, evoked polysynaptic PSPs which were predominantly hyperpolarizing in both fast and slow twitch motor units.3. Volleys in cutaneous afferents in the sural and saphenous nerves evoked polysynaptic PSPs composed of mixtures of inhibitory and excitatory components. The inhibitory components were predominant in slow twitch motor units, while in fast twitch units there was a trend towards excitatory predominance.4. Repetitive stimulation of the red nucleus caused predominantly inhibitory PSPs in slow twitch units and mixed or predominantly excitatory PSPs in fast twitch units. There was a correlation in the excitatory/inhibitory balance between PSPs of cutaneous and rubrospinal origin in those motoneurones in which both types of PSPs were studied.5. The amplitudes of group Ia disynaptic inhibitory PSPs were found to be correlated with motor unit twitch type: IPSPs in slow twitch units were larger than those in fast twitch units. Rubrospinal conditioning volleys were found to facilitate group Ia IPSPs in both fast and slow twitch motor units.6. The results suggest that there may be several basic patterns of synaptic input organization to motoneurones within a given motor unit pool. In addition to quantitative variation in synaptic distribution, there is evidence that qualitative differences in excitatory to inhibitory balance also exist in the pathways conveying input from cutaneous afferents and rubrospinal systems to triceps surae motoneurones. These qualitative differences are correlated with the motor unit twitch type.
机译:1.已比较了由电刺激多种输入系统引起的突触后电位(PSPs)在支配慢速和快速肌肉单位的肱三头肌运动神经元中的收缩速度,并且确定了其收缩速度。2。刺激屈肌和伸肌神经的高阈值传入神经,以及关节传入神经,诱发多突触PSP,在快速和慢速抽搐运动单元中均以超极化为主。3。腓肠神经和隐性神经的皮肤传入神经中的齐射诱发由抑制性和兴奋性成分混合物组成的多突触PSP。抑制成分在慢抽搐运动单位中占主导地位,而在快抽搐运动单位中,倾向于兴奋为主。4。红色核的重复刺激在慢抽动单元中主要引起抑制性PSP,在快抽动单元中引起混合性或主要是兴奋性PSP。在研究了两种类型的PSP的运动神经元中,皮肤和红松神经源的PSP之间的兴奋/抑制平衡之间存在相关性。5。发现Ia族突触抑制性PSP的振幅与运动单位抽动类型相关:慢速抽动单元中的IPSP大于快速抽动单元中的IPSP。发现在快速和慢速抽搐运动单元中,卢氏脊髓调节性凌空抽动都能促进Ia组IPSP。6。结果表明,在给定的运动单位池中,可能存在几种突触输入组织到运动神经元的基本模式。除了突触分布的定量变化外,有证据表明,从皮肤传入神经和迷路神经系统输入到运动肱三头肌运动神经元的途径中,兴奋性与抑制性平衡的定性差异也存在。这些质量差异与电机单元抽动类型相关。

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