Xu Yuzhong, Liu Xin, Tsuji Katsunori, Hamaoka Takafumi, Tabata Izumi
Faculty of Sport and Health Science, Ritsumeikan University, Kusatsu, Shiga, Japan.
Sports Med Health Sci. 2024 Jan 13;6(1):63-69. doi: 10.1016/j.smhs.2024.01.002. eCollection 2024 Mar.
Oxygen uptake ( O) was measured during a non-exhaustive high-intensity intermittent cross-exercise (HIICE) protocol consisting of four alternating bouts of 20 s running (R) and three bouts of bicycle exercise (BE) at ∼160% and ∼170% maximal oxygen uptake ( Omax), respectively, with 10 s between-bout rests (sequence R-BE-R-BE-R-BE-R). The O during the last BE ([52.2 ± 5.0] mL·kg·min) was significantly higher than the Omax of the BE ([48.0 ± 5.4] mL·kg·min, = 30) and similar to that of running. For clarifying the underlying mechanisms, a corresponding HIICE-protocol with BE and arm cranking ergometer exercise (AC) was used (sequence AC-AC-BE-AC-BE-AC-AC-BE). In some experiments, thigh blood flow was occluded by a cuff around the upper thigh. Without occlusion, the O during the AC ([39.2 ± 7.1] mL·kg·min [6 bout]) was significantly higher than the Omax of AC ([30.2 ± 4.4] mL·kg·min, = 7). With occlusion, the corresponding O ([29.8 ± 3.9] mL·kg·min) was reduced to that of the Omax of AC and significantly less than the O without occlusion. These findings suggest that during the last bouts of HIICE may exceed the of the specific exercise, probably because it is a summation of the O for the ongoing exercise plus excess post-oxygen consumption (EPOC) produced by the previous exercise with a higher Omax.
在一项非竭尽全力的高强度间歇交叉运动(HIICE)方案中测量了摄氧量((VO₂)),该方案包括四组交替进行的20秒跑步(R)和三组自行车运动(BE),分别在最大摄氧量((VO₂max))的约160%和约170%强度下进行,每组运动之间有10秒的休息时间(顺序为R-BE-R-BE-R-BE-R)。最后一组BE期间的(VO₂)([52.2±5.0] mL·kg·min)显著高于BE的(VO₂max)([48.0±5.4] mL·kg·min,(P = 30)),且与跑步时的(VO₂)相似。为了阐明潜在机制,采用了相应的包含BE和手摇臂力计运动(AC)的HIICE方案(顺序为AC-AC-BE-AC-BE-AC-AC-BE)。在一些实验中,用大腿上部的袖带阻断大腿血流。未阻断时,AC期间的(VO₂)([39.2±7.1] mL·kg·min [6组])显著高于AC的(VO₂max)([30.2±4.4] mL·kg·min,(P = 7))。阻断后,相应的(VO₂)([29.8±3.9] mL·kg·min)降至AC的(VO₂max)水平,且显著低于未阻断时的(VO₂)。这些发现表明,在HIICE的最后几组运动中,(VO₂)可能超过特定运动的(VO₂max),这可能是因为它是当前运动的(VO₂)与先前运动产生的过量氧耗(EPOC)之和,而先前运动的(VO₂max)更高。