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Introduction: The implementation of optimal sprint training volume is a relevant component of team sport performance. This study aimed to compare the efficiency and effectiveness of two different configurations of within-season training load distribution on sprint performance over 6 weeks. Methods: Twenty male professional FH players participated in the study. Players were conveniently assigned to two groups: the experimental group (MG; n = 11; applying the microdosing training methodology) and the control group (TG; n = 9; traditional training, with players being selected by the national team). Sprint performance was evaluated through 20 m sprint time (T20) m and horizontal force−velocity profile (HFVP) tests before (Pre) and after (Post) intervention. Both measurements were separated by a period of 6 weeks. The specific sprint training program was performed for each group (for vs. two weekly sessions for MG and TG, respectively) attempting to influence the full spectrum of the F-V relationship. Results: Conditional demands analysis (matches and training sessions) showed no significant differences between the groups during the intervention period (p > 0.05). No significant between-group differences were found at Pre or Post for any sprint-related performance (p > 0.05). Nevertheless, intra-group analysis revealed significant differences in F0, Pmax, RFmean at 10 m and every achieved time for distances ranging from 5 to 25 m for MG (p < 0.05). Such changes in mechanical capabilities and sprint performance were characterized by an increase in stride length and a decrease in stride frequency during the maximal velocity phase (p < 0.05). Conclusion: Implementing strategies such as microdosed training load distribution appears to be an effective and efficient alternative for sprint training in team sports such as hockey.
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http://dx.doi.org/10.3390/s23020650 | DOI Listing |
J Sci Med Sport
August 2025
School of Behavioural and Health Sciences, Australian Catholic University, Australia; Healthy Brain and Mind Research Centre (HBMRC), Australian Catholic University, Australia. Electronic address:
Objectives: Sport-related concussions are a global health concern. Athletes consistently underreport sport-related concussions, and knowledge and attitudes about sport-related concussions vary between levels of sport competition and according to a range of factors. It is unclear how concussion knowledge and attitudes relate to reporting behaviours amongst community sport athletes.
View Article and Find Full Text PDFInt J Sports Physiol Perform
September 2025
LIBM UR7424, Universite Claude Bernard Lyon 1, Team ATPA, Lyon, France.
Purpose: The aim of this study was to investigate the effects of repeated-sprint training in hypoxia (RSH) versus in normoxia (RSN) in female national-level rugby union players.
Methods: In a randomized, controlled, and crossover study, 8 female rugby union players performed 5 sessions of repeated sprints either in normobaric hypoxia (RSH, simulated altitude: 3000 m; FiO2 = 14.5%) or in normoxia (RSN, terrestrial altitude: 165 m; FiO2 = 20.
Int J Sport Nutr Exerc Metab
September 2025
Exercise and Performance Nutrition Laboratory, School of Health Sciences, Lindenwood University, St. Charles, MO, USA.
Caffeine (CAF) mouth rinsing has been considered a practical nutritional strategy among athletes. Recent studies indicate that this nutritional strategy's efficacy may depend on the athlete's prandial state. Therefore, the main aim of the current study is to determine the effect of CAF mouth rinsing on a battery of soccer-specific tests of soccer players in fasted (FST) or fed states (FED).
View Article and Find Full Text PDFJ Biomech
September 2025
Faculty of Health Sciences, University of Primorska, Izola, Slovenia. Electronic address:
This study investigated how the acceleration-speed profile (ASP) of the weaker and stronger side changes at different radii. Twenty male youth soccer players completed 30 m linear and curvilinear sprints (12.15, 11.
View Article and Find Full Text PDFSports Med
September 2025
School of Behavioural and Health Sciences, Australian Catholic University, McAuley at Banyo, Brisbane, Australia.
Background: Powerlifting is a strength sport featuring some of the world's strongest athletes. Recent decades have seen an exponential increase in research into the applied sport science and medicine of powerlifting and its Paralympic counterpart, para powerlifting. A scoping review of the area would provide athletes, coaches, policymakers, and researchers with an overview of the existing evidence to support performance, reduce injury, and foster further growth of these sports.
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