Measurement bias in estimates of system power during a vertical jump

被引:2
作者
Williams, Kym J. [1 ,2 ,3 ]
Chapman, Dale W. [2 ,4 ]
Phillips, Elissa J. [5 ]
Ball, Nick B. [2 ]
机构
[1] Australian Inst Sport, Dept Strength & Conditioning, Bruce, Australia
[2] Univ Canberra, Res Inst Sport & Exercise, Bruce, Australia
[3] Flinders Univ S Australia, Coll Educ Psychol & Social Work, Bedford Pk, SA, Australia
[4] New South Wales Inst Sport, Dept Physiol & Nutr, Sydney, NSW, Australia
[5] Australian Inst Sport, Dept Movement Sci, Bruce, Australia
关键词
Motion capture; force plate; linear optical encoder; force-velocity relationship; load-power relationship; ONE REPETITION MAXIMUM; STRENGTH; VELOCITY; FORCE; BODY; RESISTANCE; SQUAT; OUTPUT; RELIABILITY; PERFORMANCE;
D O I
10.1080/14763141.2019.1649715
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
This investigation sought to quantify the level of measurement agreement in system force, velocity and power values derived across three commonly applied assessment techniques during a countermovement jump (CMJ). Twenty-five male national representative athletes completed three CMJs under unloaded (0%(1RM)) and loaded (40%(1RM)) jump conditions. Associated values of force, velocity and power were captured simultaneously from either a linear optical encoder (LOE) or force plate (FP) and then compared to the gold-standard reference values derived from a combined force plate and three-dimensional motion capture system (FPMC). The LOE significantly (p < 0.001) overestimated and failed to meet the minimum level of relatedness (<0.80) for measures of peak velocity, peak force, peak power and mean power across both conditions compared to the FPMC reference values. A reduction in measurement dispersion and bias was, however, evident during the loaded condition. The FP significantly (p < 0.05) underestimated mean and peak power across both conditions, yet measurement bias and dispersion remained consistent. These findings highlight a disparity in measurement agreement in force, velocity and power values across alternative assessment techniques and loads. Such variance in measurement agreement will uniquely alter derived force-velocity profiles, and thus the prescription of training loads to maximise system power during unrestricted CMJs.
引用
收藏
页码:226 / 238
页数:13
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