Pensini M, Martin A
INSERM/ERIT, M 0207, Motricité-Plasticité UFR STAPS, Faculté des Sciences du Sport, BP 27 877, 21078 Dijon Cedex, France.
Neurosci Lett. 2004 Sep 9;367(3):369-74. doi: 10.1016/j.neulet.2004.06.037.
This study examined the evolution of H-reflex and V-wave responses of soleus muscle during maximal voluntary plantar-flexor contraction. We also investigated the relationship between the V response and force level and between V-wave during maximal voluntary contraction (MVC) and the maximal H reflex at rest. The H-reflex and the V-wave responses are measures of motoneuron excitability and also reflect the magnitude of presynaptic inhibition on Ia afferents and the magnitude of descending motor drive. Both may be influenced by postsynaptic inhibition. Twenty male subjects participated in the study and were assigned to one of two groups. The maximal M wave (Mmax) was evoked at rest in the 20 subjects, who then performed 10 maximal voluntary contraction. During MCV performance, a stimulus was delivered at supra-maximal intensity, which allowed us to record the superimposed M wave (Msup) and V wave of the soleus muscle. These parameters were also recorded during sub-maximal contractions (20, 40, 60, 80% of one MVC) in 10 subjects. The maximal H reflex (Hmax), was evoked at rest in the other 10 subjects. These subjects then performed 10 MVC and the Hsup (superimposed H, evoked by means of stimulus at Hmax intensity) was recorded. The results show that the amplitude of maximal M wave increased during MVC (gain 44.52 +/- 10.71%). No significant difference between Hmax/Mmax at rest and the Hsup/Msup ratios during MVC was observed, while an effect of force level on the V/Msup ratio was found. V/Msup and Hmax/Mmax were linearly correlated (r2 = 0.81), but V/Msup was significantly lower (P < 0.01) than Hmax/Mmax. In conclusion, the present study shows that maximal voluntary contractions potentiate some reflex responses. The V wave, which reflects motoneuron excitability presynaptic inhibition of Ia afferents and the magnitude of descending central motor drive to spinal motoneurons, may be a relatively simple method to analyse the modulation adaptive neural alterations at spinal and supraspinal level during voluntary contractions.
本研究检测了比目鱼肌在最大自主跖屈收缩过程中H反射和V波反应的变化。我们还研究了V反应与力水平之间的关系,以及最大自主收缩(MVC)期间的V波与静息时最大H反射之间的关系。H反射和V波反应是运动神经元兴奋性的指标,也反映了对Ia传入纤维的突触前抑制程度和下行运动驱动的大小。两者都可能受到突触后抑制的影响。20名男性受试者参与了本研究,并被分为两组。在20名受试者静息状态下诱发最大M波(Mmax),然后他们进行10次最大自主收缩。在MVC过程中,以超强强度施加刺激,这使我们能够记录比目鱼肌的叠加M波(Msup)和V波。在10名受试者进行次最大收缩(一次MVC的20%、40%、60%、80%)时也记录了这些参数。在另外10名受试者静息状态下诱发最大H反射(Hmax)。然后这些受试者进行10次MVC,并记录Hsup(通过Hmax强度的刺激诱发的叠加H)。结果显示,MVC期间最大M波的幅度增加(增益44.52±10.71%)。静息时Hmax/Mmax与MVC期间Hsup/Msup比值之间未观察到显著差异,而发现力水平对V/Msup比值有影响。V/Msup与Hmax/Mmax呈线性相关(r2 = 0.81),但V/Msup显著低于Hmax/Mmax(P < 0.01)。总之,本研究表明最大自主收缩增强了一些反射反应。V波反映了运动神经元兴奋性、对Ia传入纤维的突触前抑制以及下行中枢运动驱动至脊髓运动神经元的大小,可能是一种相对简单的方法,用于分析自主收缩期间脊髓和脊髓上水平的调制适应性神经改变。