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Explaining High-Velocity Movement: Do Isometric or Heavy Strength Measures Show Stronger Associations? A Systematic
Lachlan P James1, Luke R Stutter1, Danny Lum1,2
1Sport, Performance, and Nutrition Research Group, School of Allied Health, Human Services, & Sport,La Trobe University, Melbourne, VIC, Australia.
Background:
Establishing whether heavy dynamic or isometric strength measures better explain high-velocity performance is critical for guiding assessment strategies, prioritizing training targets, and optimizing the transfer of physical development to sport-specific outcomes.
Purpose:
The objectives of this investigation were to systematically review and meta-analyze the literature to compare heavy dynamic strength versus isometric strength measures in their associations with jump, sprint, and agility performance.
Methods:
A systematic search was conducted in accordance with PRISMA guidelines through April 2025. Eligible studies reported correlations between strength measures and high-velocity performance outcomes. Correlation coefficients were converted to Fisher z values to standardize effects, which were then analyzed using a multivariate meta-analysis framework.
Results:
Seven studies containing 22 heavy dynamic strength versus isometric strength comparisons and 299 participants were included in the final analysis. Heavy dynamic strength measures showed a small but significant overall advantage over isometric tests (z = 0.18, 95% CI [0.02 to 0.34]). By high-velocity task, fast strength (eg, measures derived from the countermovement jump) outcomes favored dynamic (z = 0.25, 95% CI [0.03 to 0.47]; I2 = 85.9%), while reactive strength (eg, drop jump reactive strength index) and change of direction/agility showed no differences, the latter with no heterogeneity (I2 = 0%).
Conclusions:
Heavy dynamic strength tests demonstrate a somewhat stronger association with high-velocity performance than isometric measures, with effects varying by outcome type. These findings support a multidimensional approach to athlete profiling and underscore the value of both dynamic and isometric strength assessments depending on the context.
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