Duclay Julien, Martin Alain
INSERM/ERM 207 Motricité-Plasticité, Faculté des Sciences du Sport, BP 27 877-21 078 Dijon Cedex, France.
J Neurophysiol. 2005 Nov;94(5):3555-62. doi: 10.1152/jn.00348.2005. Epub 2005 Jul 27.
This study was designed to investigate the modulations of H-reflex and V-wave responses during passive and maximal active dynamic actions. Experiments were performed on 16 healthy males [age: 24 +/- 4 (SD) yr]. Maximal H-reflexes (Hmax) and M-waves (MmaxR) were evoked at the same muscle length during passive isometric, shortening and lengthening actions and during maximal voluntary isometric, concentric, and eccentric plantar-flexion. In all contraction types, supra-maximal stimulus intensity was used to evoke the superimposed maximal M wave (MmaxA) and V wave (V) of the soleus muscle. At rest, the Hmax/MmaxR ratio was significantly reduced during lengthening with respect to isometric and shortening actions (P < 0.05). For each action type, the ratio between H reflex superimposed to the contraction (Hsup) and MmaxA was not different from Hmax/MmaxR ratio. When plantar flexors were maximally voluntary activated, the Hsup/MmaxA ratio was still lower during eccentric contraction as compared with isometric and concentric efforts (0.33 +/- 0.03 vs. 0.47 +/- 0.02 and 0.50 +/- 0.03, P < 0.001), whereas V/MmaxA ratios were similar for all contraction types (isometric 0.26 +/- 0.02; concentric 0.23 +/- 0.03, and eccentric 0.24 +/- 0.02; P > 0.05). The V/MmaxA ratio was significantly lower than Hsup/MmaxA during isometric and concentric MVC (P < 0.001). No difference was observed between V/MmaxA and Hsup/MmaxA ratios during eccentric efforts. The H-reflex modulations, present during lengthening actions, were mainly attributed to presynaptic inhibition of Ia afferents and to homosynaptic postactivation depression. Results on V wave and H reflex suggest that during eccentric MVC, the spinal loop is specifically modulated by the supra-spinal centers and/or neural mechanisms at spinal level.
本研究旨在探讨被动和最大主动动态动作过程中H反射和V波反应的调节情况。对16名健康男性[年龄:24±4(标准差)岁]进行了实验。在被动等长、缩短和延长动作以及最大自主等长、向心和离心跖屈过程中,在相同肌肉长度下诱发最大H反射(Hmax)和M波(MmaxR)。在所有收缩类型中,使用超强刺激强度诱发比目鱼肌的叠加最大M波(MmaxA)和V波(V)。静息时,与等长和缩短动作相比,延长过程中Hmax/MmaxR比值显著降低(P<0.05)。对于每种动作类型,叠加于收缩过程中的H反射(Hsup)与MmaxA的比值与Hmax/MmaxR比值无差异。当跖屈肌进行最大自主激活时,与等长和向心收缩相比,离心收缩过程中Hsup/MmaxA比值仍较低(0.33±0.03对0.47±0.02和0.50±0.03,P<0.001),而所有收缩类型的V/MmaxA比值相似(等长0.26±0.02;向心0.23±0.03,离心0.24±0.02;P>0.05)。在等长和向心最大随意收缩(MVC)过程中,V/MmaxA比值显著低于Hsup/MmaxA(P<0.001)。在离心收缩过程中,V/MmaxA和Hsup/MmaxA比值之间未观察到差异。延长动作过程中出现的H反射调节主要归因于Ia传入纤维的突触前抑制和同突触后激活抑制。V波和H反射的结果表明,在离心MVC过程中,脊髓环路受到脊髓以上中枢和/或脊髓水平神经机制的特异性调节。