Reactive Countermovement Jump Mechanics Across Basketball Experience Levels

Countermovement jumps are usually tested as self-initiated maximal efforts, although many sport actions require athletes to react to an external event and still jump as high as possible. Background and Objectives: We examined how this rapid-initiation requirement was associated with CMJ mechanics, whether the pattern was similar across levels of basketball-specific experience, and whether arm swing altered the response. Methods: Forty-four men (15 physically active non-basketball controls, 15 mid-level basketball players, and 14 high-level basketball players) performed countermovement jumps with and without arm swing in four fixed-order blocks. Trial-level linear mixed-effects models included 564 valid attempts. Results: In the signal-initiated blocks, movement time was 0.091 s shorter (95% CI −0.103 to −0.078) and jump height was 1.63 cm lower (95% CI −2.04 to −1.21). Unloading (−0.069 s), braking (−0.011 s), and propulsion (−0.010 s) were all shorter; countermovement depth decreased, peak downward speed increased, and net propulsive impulse fell by 0.052 N s/kg despite a small increase in mean net propulsive force. Movement time decreased in all six group-by-jump cells. The jump-height reduction was statistically clear at the group level but small and of uncertain practical relevance for individuals. Basketball-specific experience did not clearly moderate the main condition effects. Arm swing reduced the movement-time difference by 0.043 s but did not clearly reduce the jump-height difference. Conclusion: The rapid-initiation condition was associated with a broad reorganization of movement timing and force–time strategy, with a smaller change in endpoint performance. Because the conditions were always performed in the same order, these findings should be interpreted as fixed-order condition differences and confirmed in counterbalanced designs.

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Journal
Journal of Functional Morphology and Kinesiology
Published
2026-10-04
DOI
https://doi.org/10.3390/jfmk11040406
Primary Topic
Sports Performance and Training
Type
article
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article

Reactive Countermovement Jump Mechanics Across Basketball Experience Levels

Miloš R. Mudrić, Radivoj Mandić, Branislav Božović, Olivera M. Knežević et al.
Journal of Functional Morphology and Kinesiology
Sports Performance and Training
article

Reactive Countermovement Jump Mechanics Across Basketball Experience Levels

Miloš R. Mudrić, Radivoj Mandić, Branislav Božović, Olivera M. Knežević, Dragan M. Mirkov, Jelena Aleksić
article en

Abstract

Countermovement jumps are usually tested as self-initiated maximal efforts, although many sport actions require athletes to react to an external event and still jump as high as possible. Background and Objectives: We examined how this rapid-initiation requirement was associated with CMJ mechanics, whether the pattern was similar across levels of basketball-specific experience, and whether arm swing altered the response. Methods: Forty-four men (15 physically active non-basketball controls, 15 mid-level basketball players, and 14 high-level basketball players) performed countermovement jumps with and without arm swing in four fixed-order blocks. Trial-level linear mixed-effects models included 564 valid attempts. Results: In the signal-initiated blocks, movement time was 0.091 s shorter (95% CI −0.103 to −0.078) and jump height was 1.63 cm lower (95% CI −2.04 to −1.21). Unloading (−0.069 s), braking (−0.011 s), and propulsion (−0.010 s) were all shorter; countermovement depth decreased, peak downward speed increased, and net propulsive impulse fell by 0.052 N s/kg despite a small increase in mean net propulsive force. Movement time decreased in all six group-by-jump cells. The jump-height reduction was statistically clear at the group level but small and of uncertain practical relevance for individuals. Basketball-specific experience did not clearly moderate the main condition effects. Arm swing reduced the movement-time difference by 0.043 s but did not clearly reduce the jump-height difference. Conclusion: The rapid-initiation condition was associated with a broad reorganization of movement timing and force–time strategy, with a smaller change in endpoint performance. Because the conditions were always performed in the same order, these findings should be interpreted as fixed-order condition differences and confirmed in counterbalanced designs.

Journal of Functional Morphology and KinesiologyVol. 11(4)
University of Belgrade (RS)
Openalex Percentile: Top 9%
Sports Performance and Training
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