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人类上肢中相反Ia中间神经元相互抑制的证据。

Evidence for mutual inhibition of opposite Ia interneurones in the human upper limb.

作者信息

Baldissera F, Cavallari P, Fournier E, Pierrot-Deseilligny E, Shindo M

出版信息

Exp Brain Res. 1987;66(1):106-14. doi: 10.1007/BF00236207.

Abstract

The H-reflex technique was used to collect indirect evidence for changes in excitability of the interneurones mediating reciprocal Ia inhibition between wrist extensors and flexors. Stimulating the radial nerve results in an inhibition of the flexor carpi radialis (FCR) H-reflex and evidence has previously been presented that the early phase of inhibition is mediated by extensor-coupled Ia interneurones (Ext Ia INs), i.e. by inhibitory interneurones fed by muscle spindle Ia afferents from wrist extensors. Variations in the level of this inhibition were used to assess changes in excitability of Ext Ia INs. Stimulation of group I fibres from flexors was shown to depress the "reference" Ia inhibition, i.e. to inhibit the Ext Ia INs. The central latency of this interneuronal inhibition was compatible with a disynaptic linkage between flexor Ia afferents and Ext Ia INs. Its threshold and time course profile could almost exactly be superimposed on those of reciprocal Ia inhibition from flexors to extensor carpi radialis (ECR) motoneurones (MNs). This suggests that the Ia inhibitions to extensor MNs and extensor Ia INs are collateral effects mediated by the same flexor-coupled Ia interneurones. In two subjects, in whom it was possible to elicit an H-reflex in the ECR, inhibition of flexor-coupled Ia interneurones by activation of extensor Ia interneurones could similarly be demonstrated.

摘要

采用H反射技术收集间接证据,以证明介导腕伸肌和屈肌之间相互Ia抑制的中间神经元兴奋性的变化。刺激桡神经会抑制桡侧腕屈肌(FCR)的H反射,先前已有证据表明,早期抑制是由伸肌耦合Ia中间神经元(Ext Ia INs)介导的,即由来自腕伸肌的肌梭Ia传入纤维支配的抑制性中间神经元介导。这种抑制水平的变化被用来评估Ext Ia INs兴奋性的变化。结果显示,刺激屈肌的I类纤维会抑制“参考”Ia抑制,即抑制Ext Ia INs。这种中间神经元抑制的中枢潜伏期与屈肌Ia传入纤维和Ext Ia INs之间的双突触联系相符。其阈值和时间进程几乎可以完全叠加在从屈肌到桡侧腕伸肌(ECR)运动神经元(MNs)的相互Ia抑制的阈值和时间进程上。这表明,对伸肌运动神经元和伸肌Ia中间神经元的Ia抑制是由相同的屈肌耦合Ia中间神经元介导的旁侧效应。在两名能够引出ECR的H反射的受试者中,同样可以证明通过激活伸肌Ia中间神经元来抑制屈肌耦合Ia中间神经元。

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