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Acute caffeine ingestion enhances performance and dampens muscle pain following resistance exercise to failure.
J Sports Med Phys Fitness. 2012 Jun; 52(3):280-5.JS

Abstract

This double-blind, within-subjects experiment examined the effects of acute caffeine ingestion on perceptions of muscle pain following a bout of high-intensity, upper-body resistance exercise to failure. Moderately trained males (N.=18) ingested a dose of caffeine (5 mg · kg-1) or placebo in a randomised and counterbalanced order and 1 hour later completed bench press exercise to failure at an intensity of 60% 1 repetition maximum. Repetitions completed was taken as a measure of performance, peak heart rate was determined via heart rate telemetry during the exercise bout, rating of perceived exertion (RPE) and upper body muscle pain was recorded immediately upon failure of the exercise task and peak blood lactate concentration was determined post-exercise. Caffeine resulted in improved repetitions to failure (t [17]=3.119, P=0.006), greater peak blood lactate (t [17] =5.080, P=0.0001) and lower RPE (t 17=-3.431, P=0.003) compared to placebo. Muscle pain perception was also significantly lower in the caffeine condition compared to placebo (t [17]=-2.567, P=0.04). These results support prior studies using aerobic based exercise modes in suggesting that caffeine ingestion can dampen exercise-induced muscle pain. Specifically, caffeine ingestion enhances muscular strength performance and reduces upper body muscle pain perception immediately following a bout of high-intensity resistance exercise to failure.

Authors+Show Affiliations

Department of Biomolecular and Sports Sciences, Coventry University, Coventry, UK. michael.duncan@coventry.ac.ukNo affiliation info available

Pub Type(s)

Journal Article
Randomized Controlled Trial

Language

eng

PubMed ID

22648466

Citation

Duncan, M J., and S W. Oxford. "Acute Caffeine Ingestion Enhances Performance and Dampens Muscle Pain Following Resistance Exercise to Failure." The Journal of Sports Medicine and Physical Fitness, vol. 52, no. 3, 2012, pp. 280-5.
Duncan MJ, Oxford SW. Acute caffeine ingestion enhances performance and dampens muscle pain following resistance exercise to failure. J Sports Med Phys Fitness. 2012;52(3):280-5.
Duncan, M. J., & Oxford, S. W. (2012). Acute caffeine ingestion enhances performance and dampens muscle pain following resistance exercise to failure. The Journal of Sports Medicine and Physical Fitness, 52(3), 280-5.
Duncan MJ, Oxford SW. Acute Caffeine Ingestion Enhances Performance and Dampens Muscle Pain Following Resistance Exercise to Failure. J Sports Med Phys Fitness. 2012;52(3):280-5. PubMed PMID: 22648466.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - Acute caffeine ingestion enhances performance and dampens muscle pain following resistance exercise to failure. AU - Duncan,M J, AU - Oxford,S W, PY - 2012/6/1/entrez PY - 2012/6/1/pubmed PY - 2012/9/21/medline SP - 280 EP - 5 JF - The Journal of sports medicine and physical fitness JO - J Sports Med Phys Fitness VL - 52 IS - 3 N2 - This double-blind, within-subjects experiment examined the effects of acute caffeine ingestion on perceptions of muscle pain following a bout of high-intensity, upper-body resistance exercise to failure. Moderately trained males (N.=18) ingested a dose of caffeine (5 mg · kg-1) or placebo in a randomised and counterbalanced order and 1 hour later completed bench press exercise to failure at an intensity of 60% 1 repetition maximum. Repetitions completed was taken as a measure of performance, peak heart rate was determined via heart rate telemetry during the exercise bout, rating of perceived exertion (RPE) and upper body muscle pain was recorded immediately upon failure of the exercise task and peak blood lactate concentration was determined post-exercise. Caffeine resulted in improved repetitions to failure (t [17]=3.119, P=0.006), greater peak blood lactate (t [17] =5.080, P=0.0001) and lower RPE (t 17=-3.431, P=0.003) compared to placebo. Muscle pain perception was also significantly lower in the caffeine condition compared to placebo (t [17]=-2.567, P=0.04). These results support prior studies using aerobic based exercise modes in suggesting that caffeine ingestion can dampen exercise-induced muscle pain. Specifically, caffeine ingestion enhances muscular strength performance and reduces upper body muscle pain perception immediately following a bout of high-intensity resistance exercise to failure. SN - 0022-4707 UR - https://www.unboundmedicine.com/medline/citation/22648466/Acute_caffeine_ingestion_enhances_performance_and_dampens_muscle_pain_following_resistance_exercise_to_failure_ L2 - http://www.minervamedica.it/index2.t?show=R40Y2012N03A0280 DB - PRIME DP - Unbound Medicine ER -