Faculty of Medicine, UMR MD2 P2COE, Marseille, France.
Int J Sports Med. 2010 Aug;31(8):548-54. doi: 10.1055/s-0030-1251993. Epub 2010 Jun 9.
Because previous researchers have reported a reduced lactic acid production that accompanies a delayed or an absent ventilatory threshold (VTh) in water-based exercise, we hypothesized that the metaboreflex, activated by muscle acidosis, might be absent in fin swimming. This motor response, delaying the occurrence of fatigue, is characterized by a decreased median frequency (MF) of electromyographic (EMG) power spectrum. Seven healthy subjects performed a maximal fin swimming exercise protocol with simultaneous recordings of surface EMGs in VASTUS MEDIALIS (VM), TIBIALIS ANTERIOR (TA) and GASTROCNEMIUS MEDIALIS (GM). We computed the root mean square (RMS) and MF and recorded the compound evoked muscle potential (M-wave) in VM. We also measured the propulsive force and oxygen uptake (VO (2)), and determined VTh. VTh was absent in 4/7 subjects and measured at 70-90% of VO (2max) in the other three. In the three studied muscles, the global EMG activity (RMS) increased while the MF decreased in proportion of VO (2), the MF changes being significantly higher in VM (-29%) and GM (-39%) than in TA (-19%). Because no M-wave changes were noted, the MF decline was attributed to the recruitment of low-frequency, fatigue-resistant motor units. Our most important finding is the persistence of the metaboreflex even in a situation of reduced muscle acidosis.
由于先前的研究人员报告说,在水基运动中,乳酸产量减少伴随着通气阈(VTh)延迟或不存在,我们假设肌肉酸中毒激活的代谢反射可能在 fins 游泳中不存在。这种运动反应会延迟疲劳的发生,其特征是肌电图(EMG)功率谱的中频(MF)降低。7 名健康受试者进行了最大 fins 游泳运动方案,同时记录了 VASTUS MEDIALIS(VM)、TIBIALIS ANTERIOR(TA)和 GASTROCNEMIUS MEDIALIS(GM)的表面 EMG。我们计算了均方根(RMS)和 MF,并记录了 VM 中的复合诱发肌肉电位(M 波)。我们还测量了推进力和耗氧量(VO(2)),并确定了 VTh。4/7 名受试者中 VTh 不存在,其余 3 名受试者中 VTh 在 VO(2max)的 70-90%处测量。在研究的三个肌肉中,全局 EMG 活动(RMS)随着 VO(2)的增加而增加,而 MF 则按比例降低,VM(-29%)和 GM(-39%)中的 MF 变化明显高于 TA(-19%)。由于没有观察到 M 波变化,MF 下降归因于低频率、抗疲劳运动单位的募集。我们最重要的发现是,即使在肌肉酸中毒减少的情况下,代谢反射仍然存在。