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人体在自愿进行腕关节屈伸时Ia传入纤维突触前抑制的调制。

Modulation of presynaptic inhibition of la afferents during voluntary wrist flexion and extension in man.

作者信息

Aymard C, Baret M, Katz R, Lafitte C, Pénicaud A, Raoul S

机构信息

Laboratoire de Neurophysiologie Clinique, Rééducation, Hôpital de la Salpétrière, 47 boulevard de l'Hôpital, 75651 Paris, France.

出版信息

Exp Brain Res. 2001 Mar;137(1):127-31. doi: 10.1007/s002210000662.

Abstract

Changes in presynaptic inhibition of Ia terminals directed to flexor carpi radialis (FCR) motoneurones (MNs) were investigated in normal human subjects at rest and during voluntary wrist flexion and extension. To that end, two independent methods were used: (1) the radial-induced D1 inhibition of the FCR H reflex, which assesses the excitability of PAD (primary afferent depolarisation) interneurones controlling presynaptic inhibition of Ia terminals mediating the afferent volley of the FCR H reflex; and (2) the heteronymous monosynaptic Ia facilitation induced in the FCR H reflex by intrinsic muscle Ia afferent stimulation, which assesses the ongoing presynaptic inhibition of Ia terminals. With respect to results at rest, it was found that at the onset of (and during tonic) voluntary wrist flexion, D1 inhibition was reduced and heteronymous monosynaptic Ia facilitation was increased. This suggests that, as in the lower limb, presynaptic inhibition is decreased on Ia terminals projecting to MNs involved in the voluntary contraction. In contrast with results observed in the lower limb, presynaptic inhibition of Ia terminals to FCR MNs was also found to be reduced at the onset of a voluntary contraction involving the antagonistic wrist extensors, suggesting that presynaptic inhibition of Ia terminals projecting to wrist flexors and extensors might be mediated through the same subsets of PAD interneurones. This is in keeping with other features showing that the organisation of reflex pathways between wrist flexors and extensors differs from that observed at other (elbow, ankle) joints.

摘要

在正常人体受试者处于静息状态以及进行腕关节主动屈伸时,研究了支配桡侧腕屈肌(FCR)运动神经元(MNs)的Ia类终末的突触前抑制变化。为此,采用了两种独立的方法:(1)桡神经诱发的FCR H反射的D1抑制,该方法评估控制介导FCR H反射传入冲动的Ia类终末突触前抑制的初级传入去极化(PAD)中间神经元的兴奋性;(2)通过固有肌Ia类传入纤维刺激在FCR H反射中诱发的异源单突触Ia类易化,该方法评估Ia类终末持续的突触前抑制。关于静息状态下的结果,发现在(以及在持续性)腕关节主动屈曲开始时,D1抑制降低而异源单突触Ia类易化增加。这表明,与下肢情况一样,投射到参与主动收缩的运动神经元的Ia类终末上的突触前抑制减弱。与在下肢观察到的结果相反,在涉及拮抗肌腕关节伸肌的主动收缩开始时,也发现对FCR运动神经元的Ia类终末的突触前抑制减弱,这表明投射到腕关节屈肌和伸肌的Ia类终末的突触前抑制可能是通过相同的PAD中间神经元亚群介导的。这与其他特征一致,表明腕关节屈肌和伸肌之间的反射通路组织与在其他(肘关节、踝关节)关节观察到的不同。

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