首页> 外文期刊>European journal of applied physiology >Oxygen uptake kinetics during moderate, heavy and severe intensity 'submaximal' exercise in humans: the influence of muscle fibre type and capillarisation.
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Oxygen uptake kinetics during moderate, heavy and severe intensity 'submaximal' exercise in humans: the influence of muscle fibre type and capillarisation.

机译:在人类中度,重度和重度“次最大”运动中的摄氧动力学:肌肉纤维类型和毛细血管化的影响。

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The purpose of the present study was to test the hypothesis that muscle fibre type influences the oxygen uptake ( Vdot;O(2)) on-kinetic response (primary time constant; primary and slow component amplitudes) during moderate, heavy and severe intensity sub-maximal cycle exercise. Fourteen subjects [10 males, mean (SD) age 25 (4) years; mass 72.6 (3.9) kg; Vdot;O(2peak) 47.9 (2.3) ml kg(-1) min(-1)] volunteered to participate in this study. The subjects underwent a muscle biopsy of the vastus lateralis for histochemical determination of muscle fibre type, and completed repeat 'square-wave' transitions from unloaded cycling to power outputs corresponding to 80% of the ventilatory threshold (VT; moderate exercise), 50% (heavy exercise) and 70% (severe exercise) of the difference between the VT and Vdot;O(2peak). Pulmonary Vdot;O(2 )was measured breath-by-breath. The percentage of type I fibres was significantly correlated with the time constant of the primary Vdot;O(2 )response for heavy exercise ( r=-0.68). Furthermore, the percentage of type I muscle fibres was significantly correlated with the gain of the Vdot;O(2) primary component for moderate ( r=0.65), heavy ( r=0.57) and severe ( r=0.57) exercise, and with the relative amplitude of the Vdot;O(2 )slow component for heavy ( r=-0.74) and severe ( r=-0.64) exercise. The influence of muscle fibre type on the Vdot;O(2 )on-kinetic response persisted when differences in aerobic fitness and muscle capillarity were accounted for. This study demonstrates that muscle fibre type is significantly related to both the speed and the amplitudes of the Vdot;O(2 )response at the onset of constant-load sub-maximal exercise. Differences in contraction efficiency and oxidative enzyme activity between type I and type II muscle fibres may be responsible for the differences observed.
机译:本研究的目的是检验以下假设:在中等强度,重度和严重强度的子过程中,肌肉纤维类型会影响运动时的氧吸收(主要时间常数;主要和缓慢的成分振幅)对氧气的吸收(VdotO(2))。 -最大循环运动。 14名受试者[10名男性,平均(SD)年龄25(4)岁;质量72.6(3.9)千克; V点(2peak)47.9(2.3)ml kg(-1)min(-1)]自愿参加了这项研究。受试者接受了股外侧肌的肌肉活检,以组织化学测定肌肉纤维类型,并完成了从无负荷骑行到功率输出的重复“方波”转换,分别相当于通气阈值的80%(VT;中等强度运动),50% (重运动)和VT和V点(2peak)之间差异的70%(重运动)。逐呼吸测量肺V(O 2)。 I型纤维的百分比与剧烈运动的主要V点O(2)响应的时间常数显着相关(r = -0.68)。此外,对于中度(r = 0.65),重度(r = 0.57)和重度(r = 0.57)的运动以及与中度运动(r = 0.57),I型肌纤维的百分比与V(2)主要成分的增益显着相关。在剧烈运动(r = -0.74)和剧烈运动(r = -0.64)时Vdot(2)慢分量的相对振幅。当考虑到有氧适应性和肌肉毛细血管的差异时,肌纤维类型对V点(2)的运动反应的影响仍然存在。这项研究表明,在恒负荷次最大运动开始时,肌肉纤维类型与速度和V点(2)响应的幅度都显着相关。 I型和II型肌纤维之间收缩效率和氧化酶活性的差异可能是观察到的差异的原因。

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