Acute and long-term effects of stroboscopic training on sport performance: A systematic review and meta-analysis
Острые и отдалённые эффекты стробоскопической тренировки на спортивные показатели: систематический обзор и мета-анализ
2025-12-03
SCID: 54.1/mvdg4d5t
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response accuracyresponse timesport-specific performancestroboscopic trainingsystematic review and meta-analysis
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Abstract (AI)
Stroboscopic training is increasingly used to enhance athletes' perceptual and motor skills, but its impact on sport-specific performance remains unclear. This systematic review and meta-analysis assessed short- and long-term effects of stroboscopic training on performance metrics, focusing on response accuracy and time. Following PRISMA guidelines (PROSPERO code: CRD420251027637), four databases were searched through April 2025. Studies were eligible if peer-reviewed, in English, and evaluated sport performance during or after stroboscopic training. Risk of bias was assessed with a modified Downs and Black tool. Standardized mean differences (SMDs) were computed using fixed- or random-effects models, depending on heterogeneity. Seventeen studies met inclusion criteria. Acute stroboscopic exposure led to moderate performance decrements in response accuracy (SMD = 0.50; 95% CI: 0.19-0.81) and response time (SMD = 0.51; 95% CI: 0.17 to 0.86). In contrast, long-term training produced significant improvements in response accuracy (SMD = -0.71; 95% CI: -1.41 to -0.02) and response time (SMD = -1.10; 95% CI: -2.11 to -0.08), equating to gains of 5.7% and 5.3%, respectively. Stroboscopic training enhances long-term sport-specific performance, whereas despite initial performance decrements during training. These findings highlight its value as a perceptual training strategy in fast-paced sports. Future research should standardise protocols and investigate the underlying neurophysiological mechanisms.
Key Findings
1
Acute stroboscopic exposure causes moderate decrements in response accuracy (SMD = 0.50; 95% CI: 0.19–0.81).
2
Acute stroboscopic exposure causes moderate decrements in response time (SMD = 0.51; 95% CI: 0.17–0.86).
3
Long-term stroboscopic training produces significant improvements in response accuracy (SMD = -0.71; 95% CI: -1.41 to -0.02), equivalent to a 5.7% gain.
4
Long-term stroboscopic training produces significant improvements in response time (SMD = -1.10; 95% CI: -2.11 to -0.08), equivalent to a 5.3% gain.
5
Overall, stroboscopic training enhances long-term sport-specific perceptual and motor performance despite initial acute performance decrements during exposure.
6
The review included 17 studies and recommends future research to standardise protocols and investigate neurophysiological mechanisms.
Research Object
Stroboscopic training applied to athletes for sport-specific performance
Research Subject
Acute (short-term) and long-term effects on sport performance metrics, specifically response accuracy and response time
Publication Details
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2025-12-03
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References available in scid.ai18
The PRISMA 2020 statement: an updated guideline for reporting systematic reviews2021
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Visual Perturbation to Enhance Return to Sport Rehabilitation after Anterior Cruciate Ligament Injury: A Clinical Commentary2021
Effects of six-week stroboscopic training program on visuomotor reaction speed in goal-directed movements in young volleyball players: a study focusing on agility performance2024
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An exploratory study on the effect of a four-week stroboscopic vision training program on soccer dribbling performance2022
The effect of stroboscopic vision training on the performance of elite curling athletes2024
The Impact of Stroboscopic Visual Conditions on the Performance of Elite Curling Athletes2024
Short- and Long-Term Stroboscopic Training Effects on Visuomotor Performance in Elite Youth Sports. Part 1: Reaction and Behavior2020
Short- and Long-Term Stroboscopic Training Effects on Visuomotor Performance in Elite Youth Sports. Part 2: Brain–Behavior Mechanisms2020
The effect of stroboscopic visual training on eye–hand coordination2020
An early review of stroboscopic visual training: insights, challenges and accomplishments to guide future studies2019
The Effect of 4-Week Stroboscopic Training on Visual Function and Sport-Specific Visuomotor Performance in Top-Level Badminton Players2018
Sports vision training: A review of the state-of-the-art in digital training techniques2016
Effects of Stroboscopic Visual Training on Visual Attention, Motion Perception, and Catching Performance2015
Stroboscopic Training Enhances Anticipatory Timing2012
Improved Visual Cognition through Stroboscopic Training2011