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在亚最大和最大努力下水中跑步和在干燥陆地上跑步时的肌肉活动和生理反应。

Muscle Activity and Physiological Responses During Running in Water and on Dry Land at Submaximal and Maximal Efforts.

机构信息

Graduate School of Human-Environment Studies, Kyushu University, Kasuga, Fukuoka, Japan.

Department of Kinesiology and Nutrition Sciences, University of Nevada, Las Vegas, Nevada.

出版信息

J Strength Cond Res. 2018 Jul;32(7):1960-1967. doi: 10.1519/JSC.0000000000002107.

Abstract

Masumoto, K, Mefferd, KC, Iyo, R, and Mercer, JA. Muscle activity and physiological responses during running in water and on dry land at submaximal and maximal efforts. J Strength Cond Res 32(7): 1960-1967, 2018-We investigated muscle activity, oxygen uptake, heart rate, and rating of perceived exertion during running in water and on dry land at submaximal and maximal efforts. Eleven recreational runners performed deep-water running (DWR) and treadmill running (TMR) graded exercise tests on separate days. On the third-test day, the subjects exercised at their 60, 80, and 100% of maximal oxygen uptake (V[Combining Dot Above]O2max) by matching specific stride frequencies or running speeds. V[Combining Dot Above]O2max, maximal heart rate (HRmax), and rating of perceived exertion at maximal effort (RPEmax) were measured. Furthermore, muscle activity from the rectus femoris, biceps femoris, tibialis anterior, and gastrocnemius were measured. V[Combining Dot Above]O2max (DWR: 48.9 ± 5.7 ml·kg·min; TMR: 59.2 ± 5.6 ml·kg·min; p < 0.001) and HRmax (DWR: 174.1 ± 9.6 beats·min; TMR: 191.2 ± 6.9 beats·min; p < 0.001) were each lower during DWR vs. TMR. In addition, RPEmax was not significantly different between DWR and TMR (DWR: 17.8 ± 1.9; TMR: 18.4 ± 1.3; p > 0.05). Furthermore, muscle activity from all tested muscles was not influenced by the interaction of mode and intensity (p > 0.05). Muscle activity from all tested muscles was different between modes (p < 0.05) and between intensities (p < 0.001). Specifically, muscle activity from the tested muscles during DWR was 29-69% lower than that of TMR at maximal effort. Athletes and coaches should consider that the exercise intensity during DWR can be overestimated, if exercise prescription was made according to the maximal responses during TMR.

摘要

松原、KC 梅弗德、R 伊约和 JA 默瑟。在亚最大和最大努力下,水中和陆地上跑步的肌肉活动和生理反应。J 力量与调节研究 32(7):1960-1967,2018 年-我们研究了在亚最大和最大努力下,水中和陆地上跑步时的肌肉活动、摄氧量、心率和感知用力程度。11 名休闲跑步者在不同的日子里进行了深水区跑步(DWR)和跑步机跑步(TMR)分级运动测试。在第三次测试日,受试者以 60%、80%和 100%的最大摄氧量(V[组合点上方]O2max)进行运动,通过匹配特定的步频或跑步速度。V[组合点上方]O2max、最大心率(HRmax)和最大努力时的感知用力程度(RPEmax)进行测量。此外,还测量了股直肌、股二头肌、胫骨前肌和腓肠肌的肌肉活动。V[组合点上方]O2max(DWR:48.9±5.7 ml·kg·min;TMR:59.2±5.6 ml·kg·min;p<0.001)和 HRmax(DWR:174.1±9.6 beats·min;TMR:191.2±6.9 beats·min;p<0.001)在 DWR 时均低于 TMR。此外,DWR 和 TMR 之间的 RPEmax 无显著差异(DWR:17.8±1.9;TMR:18.4±1.3;p>0.05)。此外,模式和强度的相互作用对所有测试肌肉的肌肉活动没有影响(p>0.05)。所有测试肌肉的肌肉活动在模式之间存在差异(p<0.05),在强度之间存在差异(p<0.001)。具体而言,在最大努力下,DWR 时所有测试肌肉的肌肉活动比 TMR 低 29%-69%。运动员和教练应该考虑,如果根据 TMR 时的最大反应制定运动处方,那么 DWR 时的运动强度可能会被高估。

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