Morin C, Pierrot-Deseilligny E
Exp Brain Res. 1977 Apr 21;27(5):509-22. doi: 10.1007/BF00239040.
Variations of the soleus H-reflex were studied during voluntary isometric or anisometric contractions of the tibialis anterior in man. At the onset of isometric contractions there was a weak inhibition of the soleus H-reflex, which was not related to the force of the tibialis anterior contraction. 110 msec after the onset of the EMG activity, the inhibition became secondarily more marked and was then related to the force of the contraction. This secondary potentiation of the H-reflex inhibition is brought about by group I fibres activity, since it was markedly reduced during ischemia of the leg. It persisted during local muscular fatigue, this indicating that Ib fibres from tibialis anterior are not involved and that, by the process of elimination, group Ia fibres must be responsible for the supplementary secondary inhibition. It is concluded that the early inhibition is only due to suprasegmental activity, whereas during the secondary part of the inhibition there is a supplementary inhibitory action brought about by Ia fibres from tibialis anterior. The secondary potentiation of the inhibition is therefore likely to be produced via the gamma loop.
在人体进行胫骨前肌的随意等长收缩或非等长收缩期间,研究了比目鱼肌H反射的变化。在等长收缩开始时,比目鱼肌H反射有轻度抑制,这与胫骨前肌收缩的力量无关。肌电图活动开始110毫秒后,抑制作用继而变得更加明显,然后与收缩力量相关。H反射抑制的这种继发性增强是由I类纤维活动引起的,因为在腿部缺血期间其明显减弱。在局部肌肉疲劳期间它持续存在,这表明来自胫骨前肌的Ib纤维未参与其中,并且通过排除过程,Ia类纤维必定是补充性继发性抑制的原因。得出的结论是,早期抑制仅归因于节段上的活动,而在抑制的继发性阶段,存在由胫骨前肌的Ia纤维引起的补充性抑制作用。因此,抑制作用的继发性增强很可能是通过γ环路产生的。