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Force-velocity property of leg muscles in individuals of different level of physical fitness

机译:不同身体素质水平人群腿部肌肉的力量速度特性

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The present study explored the method of testing muscle mechanical properties through the linear force-velocity (F-V) relationships obtained from loaded vertical jumps. Specifically, we hypothesised that the F-V relationship parameters depicting the force, power, and velocity of the tested muscles will differ among individuals of different physical fitness. Strength trained, physically active, and sedentary male participants (N = 10 + 10 + 10; age 20-29 years) were tested on maximum countermovement and squat jumps where manipulation of external loads provided a range of F and V data. The observed F-V relationships of the tested leg muscles were approximately linear and mainly strong (median correlation coefficients ranged from 0.77 to 0.92; all p < 0.05), independently of either the tested group or the jump type. The maximum power revealed higher values in the strength trained than in the physically active and sedentary participants. This difference originated from the differences in F-intercepts, rather than from the V-intercepts. We conclude that the observed parameters could be sensitive enough to detect the differences among both the individuals of different physical fitness and various jump types. The present findings support using loaded vertical jumps and, possibly, other maximum performance multi-joint movements for the assessment of mechanical properties of active muscles.
机译:本研究探索了通过从加载的垂直跳动获得的线性力-速度(F-V)关系来测试肌肉力学性能的方法。具体来说,我们假设描述不同身体适应度的个体之间的F-V关系参数(描述被测肌肉的力量,力量和速度)会有所不同。对受过力量训练,身体活动和久坐的男性参与者(N = 10 + 10 + 10;年龄20-29岁)进行了最大反运动和下蹲跳动测试,其中通过外部载荷的操作提供了一系列F和V数据。观察到的受测腿部肌肉的F-V关系大致呈线性,并且主要呈强力(中位数相关系数范围为0.77至0.92;所有p <0.05),与受测组或跳跃类型无关。最大力量显示出比从事体育活动和久坐的参与者更高的力量训练价值。这种差异源自F截距的差异,而不是V截距的差异。我们得出结论,观察到的参数可能足够灵敏,可以检测到不同身体素质和各种跳跃类型的个体之间的差异。本研究结果支持使用加载的垂直跳动以及可能的其他最大性能的多关节运动来评估活动肌肉的机械性能。

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