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在感知运动强度固定水平下骑行诱导的神经肌肉疲劳:不同所谓低氧方法的影响

Neuromuscular Fatigue Induced by Cycling at a Fixed Level of Perceived Effort: Effects of Different Purported Hypoxic Methods.

作者信息

Beaume Jean-Baptiste, Di Domenico Hervé, Bowen Maximilien, Hintzy Frédérique, Millet Guillaume Y, Pageaux Benjamin, Debevec Tadej, Rupp Thomas

机构信息

Inter-University Laboratory of Human Movement Sciences, University Savoie Mont-Blanc, Chambéry, France.

Inter-University Laboratory of Human Movement Sciences, UJM Saint-Etienne, Saint-Etienne, France.

出版信息

Scand J Med Sci Sports. 2025 Feb;35(2):e70021. doi: 10.1111/sms.70021.

Abstract

We compared neuromuscular fatigue induced by cycling at a fixed perceived effort in normoxic condition (NOR) and three purported hypoxia modalities: systemic hypoxia (SyH, FiO = 0.13), blood flow restriction (BFR, 50% arterial occlusion pressure) and airflow restriction mask (ARM, calibrated to 3500 m). Seventeen healthy young participants cycled for 20 min at a self-selected power output corresponding to a hard effort (15/20, Borg scale) on an innovative cycle ergometer allowing immediate neuromuscular evaluation. Isometric maximum voluntary contraction of the knee extensors (IMVC), central (voluntary activation, VA) and peripheral fatigue were measured before and every 5 min during cycling. Power output, peripheral oxygen saturation (SpO), quadriceps oxygenation (near-infrared spectroscopy, TSI) and pain were assessed throughout cycling. Power output was lower in BFR and SyH compared to NOR and ARM and was lower in BFR compared to SyH. SpO was reduced only in SyH (mean 77% ± 4%). In all conditions, IMVC decreased from minute 5 and subsequently plateaued (-10% to -20%), except in BFR, wherein it further declined to -40% ± 14% at minute 20 in the presence of lowered VA and exacerbated muscle pain compared to other conditions. Muscle TSI was further decreased in SyH compared to other conditions. Our results confirm the inability of ARM to induce hypoxia. Compared to other conditions, BFR showed a greater reduction in IMVC and VA, in the presence of a higher quadriceps pain and no greater muscle deoxygenation. These results underline the psychophysiological impact of quadriceps pain on both maximal and submaximal motor output.

摘要

我们比较了在常氧条件(NOR)下以固定的主观用力程度进行骑行以及三种所谓的低氧模式所诱发的神经肌肉疲劳:全身性低氧(SyH,吸入氧分数FiO₂ = 0.13)、血流限制(BFR,动脉闭塞压的50%)和气流限制面罩(ARM,校准至海拔约3500米)。17名健康的年轻参与者在一台创新的自行车测力计上,以对应于高强度用力(Borg量表15/20)的自我选择功率输出骑行20分钟,该测力计可即时进行神经肌肉评估。在骑行前以及骑行过程中每隔5分钟测量一次膝伸肌的等长最大自主收缩(IMVC)、中枢(自主激活,VA)和外周疲劳情况。在整个骑行过程中评估功率输出、外周血氧饱和度(SpO₂)、股四头肌氧合情况(近红外光谱法,TSI)以及疼痛程度。与NOR和ARM相比,BFR和SyH条件下的功率输出较低,且BFR条件下的功率输出低于SyH。仅在SyH条件下SpO₂降低(平均77% ± 4%)。在所有条件下,IMVC从第5分钟开始下降,随后趋于平稳(约 -10%至 -20%),但BFR条件除外,在该条件下,与其他条件相比,在第20分钟时IMVC进一步下降至 -40% ± 14%,同时VA降低且肌肉疼痛加剧。与其他条件相比,SyH条件下肌肉TSI进一步降低。我们的结果证实了ARM无法诱发低氧状态。与其他条件相比,BFR在股四头肌疼痛程度更高且肌肉去氧情况未更严重的情况下,IMVC和VA的降低幅度更大。这些结果强调了股四头肌疼痛对最大和次最大运动输出的心理生理影响。

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