Laboratoire EA 2991 Efficience et Déficience Motrices, UFR STAPS, Faculté des Sciences du Sports, Université Montpellier 1, 700 Avenue du Pic Saint Loup, 34090, Montpellier, France.
Eur J Appl Physiol. 2010 Aug;109(6):1027-36. doi: 10.1007/s00421-010-1445-3. Epub 2010 Apr 1.
This study aimed to reveal the neural and muscular adjustments following a repeated-sprint (RS) running exercise. Sixteen subjects performed a series of neuromuscular tests before, immediately after and 30 min (passive recovery) post-RS exercise (12 x 40 m sprints interspaced by 30 s of passive recovery). Sprint times significantly lengthened over repetitions (+17% from the first to the last sprint; P < 0.05). After RS running exercise, maximal voluntary contraction torque of the plantar flexors (-11 +/- 7.3%), muscle activation (twitch interpolation) (-2.7 +/- 3.4%) and soleus maximal M-wave amplitude (-20 +/- 17%) were significantly (P < 0.05) reduced but returned close to baseline after 30 min. Both soleus EMG activity and maximal Hoffmann reflex normalized with respect to M-wave amplitude did not change during the whole experiment. From pre- to post-RS exercise, evoked twitch response was characterized by lower peak torque and maximal rate of torque development (-13 and -11%, respectively, P < 0.05), but was not different from baseline after recovery. Peak tetanus at 20 and 80 Hz were 17 and 8% lower (P < 0.05) in the fatigued state, respectively. Acute muscle fatigue induced by RS running exercise is mainly peripheral as the short-term (30 min) recovery pattern of plantar flexors contractile properties follows that of the voluntary force-generating capacity.
本研究旨在揭示重复短跑(RS)运动后的神经和肌肉调整。16 名受试者在 RS 运动前、后即刻和 30 分钟(被动恢复)进行了一系列神经肌肉测试(12 次 40 米短跑,间隔 30 秒被动恢复)。冲刺时间随着重复次数的增加而显著延长(从第一次到最后一次冲刺增加了 17%;P<0.05)。在 RS 跑步运动后,跖屈肌的最大自主收缩扭矩(-11 +/- 7.3%)、肌肉激活(抽搐插值)(-2.7 +/- 3.4%)和比目鱼肌最大 M 波幅度(-20 +/- 17%)均显著降低(P<0.05),但在 30 分钟后恢复到接近基线水平。在整个实验过程中,比目鱼肌的 EMG 活动和最大 Hoffmann 反射相对于 M 波幅度的归一化均未发生变化。从 RS 运动前到后,诱发的抽搐反应的特征是峰值扭矩和最大扭矩发展率降低(分别为-13%和-11%,P<0.05),但在恢复后与基线无差异。在疲劳状态下,20 Hz 和 80 Hz 的强直收缩峰值分别降低了 17%和 8%(P<0.05)。RS 跑步运动引起的急性肌肉疲劳主要是外周的,因为跖屈肌收缩性能的短期(30 分钟)恢复模式遵循自愿力产生能力的恢复模式。