首页> 外文期刊>Measurement in Physical Education and Excercise Science: Official Journal of the Measurement and Evaluation Council of AAPAR >Peak Power Assessment of Isokinetic Knee Flexor and Extensor Tests - Pitfalls of a Dynamometer-based Assessment
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Peak Power Assessment of Isokinetic Knee Flexor and Extensor Tests - Pitfalls of a Dynamometer-based Assessment

机译:等因速膝关节弯曲峰值功率评估和伸展试验 - 基于测功机的评估陷阱

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摘要

Many sports demand high forces at high movement speeds. Joint power combines these two measures and is frequently analyzed by isokinetic tests. However, various concepts of assessing joint power lead to conflicting results. The aim was to examine different methods to calculate peak power during isokinetic knee tests of sixty-one healthy male participants (20 y, 182 cm, 76 kg). Unilateral movements of the eccentrically working hamstrings and the concentrically working quadriceps at 1507s were captured by high-speed cameras. Peak power derived from isokinetic data was significantly higher (p < 0.01, d > 1.54) compared to the camera-based kinematic procedures. To achieve best accuracy, peak power should be derived from the camera-based joint angular velocity and the measured moment at time of peak power during the dynamometer's isokinetic range of motion. A meaningful assessment of isokinetic joint power should incorporate a camera-based kinematic analysis to account for potential measuring inaccuracies owing to anatomical features, axis misalignment, and tissue deformation.
机译:许多运动以高运动速度需要高力量。关节功率结合了这两项措施,经常通过等因果试验分析。然而,评估关节电力的各种概念导致突出的结果。目的是检查不同方法,以计算六十一体健康男性参与者的等足性膝关节试验(20 y,182厘米,76 kg)。高速摄像机捕获了1507年的偏心工作腿筋的单侧运动和4507年的同心工作Quadriceps。与基于相机的运动程序相比,从等因素数据衍生的峰值功率显着更高(P <0.01,D> 1.54)。为了达到最佳精度,峰值功率应从基于相机的关节角速度和测功机的等因速运动范围内的峰值功率时的测量力矩。对等因速接合电力的有意义评估应包括基于相机的运动学分析,以考虑由于解剖学特征,轴不对准和组织变形的潜在测量不准确性。

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