The Effects of Caffeine on Vertical Jump Height and Execution in Collegiate Athletes
Bloms LP, Fitzgerald JS, Short MW, Whitehead JR
Journal of strength and conditioning research · 44 citations
How it was studied
- Design
- Randomized controlled trial (indexed by PubMed)
- Studied in
- People
- Main outcome
- Health markers and function
Who paid for it
- Funding
- Independent funding
- Nonprofit
- National Collegiate Athletic Association
Based on 1 listed funder(s).
Publication
- Published
- 2015-12-01 · J Strength Cond Res · vol. 30 · issue 7 · pp. 1855–1861
- Publisher
- Lippincott Williams & Wilkins
- Cited
- 70 citations · more than 94% of similar papers · 4.2× the field average
- Impact
- Top 10% most cited in its field
- References
- 25 works
- Access
- Paywalled
- Research areas
- Coffee research and impacts · Muscle metabolism and nutrition · Exercise and Physiological Responses
- Keywords
- Caffeine, Jumping, Vertical jump, Jump, Crossover study, Athletes, Mathematics, Squat, Animal science, Medicine, Placebo, Simulation, Physical therapy, Internal medicine, Physics, Computer science, Physiology, Biology
- MeSH
- humans, caffeine, central nervous system stimulants, exercise test, cross-over studies, single-blind method, movement, adolescent, female, male, athletic performance, young adult
4 authors
From US
- Lucas P. BlomsUniversity of North Dakota
- John S. Fitzgerald · correspondingUniversity of North Dakota
- Martin W. ShortUniversity of North Dakota
- James R. WhiteheadUniversity of North Dakota
Abstract
Bloms, LP, Fitzgerald, JS, Short, MW, and Whitehead, JR. The effects of caffeine on vertical jump height and execution in collegiate athletes. J Strength Cond Res 30(7): 1855-1861, 2016-Caffeine ingestion elicits a variety of physiological effects that may be beneficial to maximal-intensity exercise performance, although its effectiveness and physical mechanism of action enhancing ballistic task performance are unclear. The purpose of this study was to examine the effects of caffeine ingestion on vertical jump height and jump execution in Division I collegiate athletes. The study used a single-blind, randomized, crossover design. Athletes (n = 25) consumed either caffeine (5 mg·kg) or placebo. After a 60-minute waiting period, athletes performed 3 squat jumps (SJ) and 3 countermovement jumps (CMJ) while standing on a force platform. Jump height and execution variables were calculated from mechanography data. In comparison with placebo, caffeine increased SJ height (32.8 ± 6.2 vs. 34.5 ± 6.7 cm; p = 0.001) and CMJ height (36.4 ± 6.9 vs. 37.9 ± 7.4 cm; p = 0.001). Peak force (p = 0.032) and average rate of force development (p = 0.037) were increased during the CMJ in the caffeine trail compared with the control. Time to half peak force was the only execution variable improved with caffeine (p = 0.019) during the SJ. It seems that caffeine affects both height and execution of jumping. Our data indicate that the physical mechanism of jump enhancement is increased peak force production or rate of force development during jumping depending on technique. The physical mechanism of jump enhancement suggests that the ergogenic effects of caffeine may transfer to other ballistic tasks involving the lower-body musculature in collegiate athletes.
Abstract via Europe PMC. Copyright remains with the authors or publisher.
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