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前额叶皮质氧合作用及对力竭运动的神经肌肉反应。

Prefrontal cortex oxygenation and neuromuscular responses to exhaustive exercise.

作者信息

Rupp Thomas, Perrey Stéphane

机构信息

Faculty of Sport Sciences, EA 2991 Motor Efficiency and Deficiency Laboratory, UFR STAPS, 700 Avenue du Pic Saint Loup, 34090, Montpellier, France.

出版信息

Eur J Appl Physiol. 2008 Jan;102(2):153-63. doi: 10.1007/s00421-007-0568-7. Epub 2007 Sep 20.

Abstract

Near-infrared spectroscopy (NIRS) allows non-invasive monitoring of central and peripheral changes in oxygenation during exercise and may provide valuable insight into the factors affecting fatigue. This study aimed to explore the changes in oxygenation of prefrontal cortex and active muscle tissue as limiting factors of incremental exercise performance in trained cyclists. Thirteen trained healthy subjects (mean +/- SE: age 24.9 +/- 1.5 years, body mass 70.1 +/- 1.2 kg, training 6.1 +/- 0.9 h week(-1)) performed a progressive maximal exercise to exhaustion on a cycling ergometer. Prefrontal cortex (Cox) and vastus lateralis muscle (Mox) oxygenation were measured simultaneously by NIRS throughout the exercise. Maximal voluntary isometric knee torques and quadriceps neuromuscular fatigue (M-wave properties and voluntary activation ratio) were evaluated before and after exercise. Maximal power output and oxygen consumption were 380.8 +/- 7.9 W and 75.0 +/- 2.2 ml min(-1) kg(-1), respectively. Mox decreased significantly throughout exercise while Cox increased in the first minutes of exercise but decreased markedly from the workload corresponding to the second ventilatory threshold up to exhaustion (P < 0.05). No significant difference was noted 6 min after maximal exercise in either the voluntary activation ratio or the M-wave properties. These findings are compatible with the notion that supraspinal modulation of motor output precedes exhaustion.

摘要

近红外光谱技术(NIRS)能够在运动过程中对中枢和外周的氧合变化进行无创监测,并且可能为影响疲劳的因素提供有价值的见解。本研究旨在探讨前额叶皮质和活跃肌肉组织的氧合变化作为训练有素的自行车运动员递增运动表现的限制因素。13名训练有素的健康受试者(平均±标准误:年龄24.9±1.5岁,体重70.1±1.2 kg,每周训练6.1±0.9小时)在自行车测力计上进行递增至力竭的最大运动。在整个运动过程中,通过近红外光谱技术同时测量前额叶皮质(Cox)和股外侧肌(Mox)的氧合。在运动前后评估最大自主等长膝关节扭矩和股四头肌神经肌肉疲劳(M波特性和自主激活率)。最大输出功率和耗氧量分别为380.8±7.9 W和75.0±2.2 ml·min⁻¹·kg⁻¹。在整个运动过程中,Mox显著下降,而Cox在运动的前几分钟增加,但从对应于第二通气阈值的工作量直至力竭时显著下降(P<0.05)。在最大运动后6分钟,自主激活率或M波特性均未发现显著差异。这些发现与运动输出的脊髓上调制先于力竭的观点一致。

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