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DETERMINING THE DIFFERENCE IN MAXIMAL OXYGEN UPTAKE OF RUNNING AND CYCLING- MRI EVALUATION OF MUSCULAR ACTIVITY LEVEL -

机译:确定跑步和循环中最大摄氧量的差异-肌肉活动水平的MRI评价-

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摘要

The purpose of this study was to determine the difference in the attainment rate of maximal oxygen uptake in cycling and running (%cycVO2max). Seven healthy male subjects (22.9±1.3 yrs, 171.9±4.7 cm, 61.0±5.2 kg) participated in a maximal incremental exercise test for running and cycling. During the exercise testing, oxygen uptake, carbon dioxide output, respiratory exchange rate, minute ventilation, tidal volume, respiratory rate, and heart rate were measured. Attainment rates of each physiological measurement for cycling and running were shown as %cycVO2max, %cycVCO2max, %cycRERmax, %cycVEmax, %cycVt, %cycRR and %cycHRmax. Transverse relaxation time (T2)-weighted spin echo images were acquired before and after the exercise periods. Exercise-induced T2 values of each muscle and muscle-group are indices of muscular activity level, so the difference between the T2 value of cycling and running in each muscle or muscle group was shown as ΔT2%. VO2max in cycling was 92.2% of VO2max in running. Significant correlations were observed between %cycVO2max and %cycVCO2max, %cycVO2max and %cycRR. Furthermore, significant correlations were recognized between %cycVO2max and ΔT2% of the m. quadriceps femoris, %cycVCO2max and ΔT2% of the m. quadriceps femoris, %cycVCO2max and the m. triceps surae, as well. These results show that the higher muscular activity level of the thigh in cycling increases the uptake of oxygen in the muscle. The T2 value shows that the uptake or redistribution of fluid within muscle is driven by the accumulation of lactate and inorganic phosphate. Therefore, the T2 value of maximal incremental exercise would reflect the anaerobic capacity of the muscle. Judging from the significant correlations between %cycVO2max and %cycVCO2max or %cycRR, the anaerobic capacity of each subject would also affect the difference between the maximal oxygen uptake of cycling and running.
机译:这项研究的目的是确定自行车和跑步中最大摄氧量的获得率差异(%cycVO2max)。七名健康的男性受试者(22.9±1.3岁,171.9±4.7 cm,61.0±5.2 kg)参加了跑步和骑行的最大增量运动测试。在运动测试过程中,测量了摄氧量,二氧化碳输出量,呼吸交换率,分钟通气量,潮气量,呼吸率和心率。骑车和跑步时每次生理测量的达到率显示为%cycVO2max,%cycVCO2max,%cycRERmax,%cycVEmax,%cycVt,%cycRR和%cycHRmax。在锻炼期间之前和之后获取横向弛豫时间(T2)加权的自旋回波图像。运动引起的每个肌肉和肌肉群的T2值是肌肉活动水平的指标,因此每个肌肉或肌肉群的骑行和跑步的T2值之间的差异表示为ΔT2%。循环中最大摄氧量为跑步中最大摄氧量的92.2%。在%cycVO2max和%cycVCO2max,%cycVO2max和%cycRR之间观察到显着的相关性。此外,在%cycVO2max和m的ΔT2%之间发现显着的相关性。股四头肌,%cycVCO2max和m的ΔT2%。股四头肌,%cycVCO2max和m。肱三头肌也是如此。这些结果表明,大腿在循环中较高的肌肉活动水平会增加肌肉中氧气的吸收。 T2值表明,肌肉中液体的摄取或重新分布是由乳酸和无机磷酸盐的积累驱动的。因此,最大增量运动的T2值将反映肌肉的无氧运动能力。从%cycVO2max和%cycVCO2max或%cycRR之间的显着相关性来看,每个受试者的无氧能力也将影响自行车和跑步的最大摄氧量之间的差异。

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