Sugaya Masato, Yasuda Tomohiro, Suga Tadashi, Okita Koichi, Abe Takashi
Graduate School of Frontier Sciences, The University of Tokyo, Kashiwanoha, Kashiwa, Japan.
Clin Physiol Funct Imaging. 2011 Sep;31(5):411-3. doi: 10.1111/j.1475-097X.2011.01033.x. Epub 2011 Jun 6.
Muscular blood flow reduction (BFR) during multiple sets of low-intensity exercise training has been shown to elicit muscle hypertrophy and strength gain. Several hypotheses have been proposed to explain the hypertrophic adaptations to low-intensity BFR exercise, which include muscle fatigue with metabolic stress. However, the change in intramuscular inorganic phosphate (Pi, an index of muscle fatigue) during multiple sets of low-intensity exercise with BFR is poorly understood. Eight men performed four sets of unilateral plantar flexion exercise (20% 1-RM) on a (31)P-magnetic resonance spectroscopy. Each subject wore a cuff (5-cm wide) on the most proximal portion of the thigh; the cuff was inflated during the exercise session at three different pressures [0 mmHg as the control ± (CON), 180 mmHg as moderate restriction (BFR-M) and 230 mmHg as high restriction (BFR-H)]. During the first and second exercise sets, the increase in Pi was higher (P<0·05) with BFR-H than with BFR-M and CON. On the other hand, the decrease in Pi was lower with BFR-H than with CON during the second and third rest periods between sets. As a result, the Pi concentration increased progressively (P<0·05) with BFR-H, while the Pi was relatively constant with BFR-M and CON during the exercise session. Our results suggest that intramuscular Pi accumulation during multiple sets of low-intensity exercise can be produced only by a high level of BFR, but not by moderate reduction. The Pi accumulation was associated both with exercise and with the rest period between sets.
多组低强度运动训练期间的肌肉血流减少(BFR)已被证明可引起肌肉肥大和力量增加。已经提出了几种假说来解释对低强度BFR运动的肥大适应性,其中包括伴有代谢应激的肌肉疲劳。然而,在多组低强度BFR运动期间肌肉内无机磷酸盐(Pi,肌肉疲劳指标)的变化尚不清楚。八名男性在磷磁共振波谱仪上进行了四组单侧跖屈运动(20% 1-RM)。每个受试者在大腿最近端佩戴一个袖带(5厘米宽);在运动过程中,袖带在三种不同压力下充气[0 mmHg作为对照±(CON),180 mmHg作为中度限制(BFR-M),230 mmHg作为高度限制(BFR-H)]。在第一组和第二组运动期间,BFR-H组的Pi增加高于BFR-M组和CON组(P<0·05)。另一方面,在组间的第二和第三个休息期,BFR-H组的Pi下降低于CON组。结果,BFR-H组的Pi浓度逐渐增加(P<0·05),而在运动过程中,BFR-M组和CON组的Pi相对恒定。我们的结果表明,多组低强度运动期间肌肉内Pi的积累仅由高水平的BFR产生,而不是由中度减少产生。Pi的积累与运动以及组间休息期都有关。