The effect of fatigue on asymmetry between lower limbs in functional performances in elite child taekwondo athletes

Влияние утомления на асимметрию нижних конечностей при выполнении функциональных тестов у элитных юных спортсменов по тхэквондо
Yanfei Guan, Shannon S. D. Bredin, Qinxian Jiang, Jack Taunton, Yongfeng Li, Nana Wu, Lina Wu, Darren E. R. Warburton
2021-01-09

Star Excursion Balance Testelite child taekwondo athletesfatigueinter-limb asymmetrytriple-hop distance
BACKGROUND: Inter-limb asymmetry above a certain threshold in functional performance indicates increased injury risk in sports. Fatigue has been found to increase bilateral asymmetry in lower-limb jumping performance among high-school and adult athletes, whereas this impact has not been examined in child athletes. This study aimed to examine the effect of fatigue on inter-limb asymmetry in functional performances in elite Taekwondo athletes aged between 9 and 11 years. METHODS: Performance of single-leg jumps, Star Excursion Balance Test (SEBT), and muscle (hamstring and gastrocnemius) flexibility were measured for 13 elite male child Taekwondo athletes (aged 9.85 ± 0.80 years) at both the rested and fatigued states to examine the inter-limb asymmetry. A two-way repeated measures ANOVA was conducted to examine for difference and the interaction between limb (dominant, non-dominant leg) and state (rested, fatigued state) for each test. Paired t test or Wilcoxon signed-rank test was used to compare the asymmetry magnitude at the rested vs. fatigued state for each test, and the variation of performance post fatigue in the dominant vs. non-dominant leg when appropriate. RESULTS: The inter-limb asymmetry in triple-hop distance significantly (p = 0.046) increased with fatigue, whereas the asymmetry significantly (p = 0.004) decreased with fatigue in anterior (ANT) reach distance in SEBT. A significant (p = 0.027) limb by state interaction was shown for posterolateral (PL) reach distance in SEBT, wherein a significant (p = 0.005) bilateral difference was only shown at the rested state. The PL reach distance showed a significantly greater decrease (p = 0.028) post fatigue when using the dominant leg for support compared to using the non-dominant leg. CONCLUSIONS: Fatigue significantly impacts inter-limb asymmetry in jump performances and dynamic balance for child athletes, while the variation of inter-limb asymmetry post fatigue may be different across tests. For the purpose of injury prevention, practitioners should consider assessing the inter-limb asymmetry for children at both the rested and fatigued state and be mindful of the fatigue response of each leg in functional tests.
1
Fatigue significantly decreased inter-limb asymmetry in anterior reach distance during the Star Excursion Balance Test (p = 0.004).
2
Fatigue significantly increased inter-limb asymmetry in triple-hop distance among elite male Taekwondo athletes aged 9–11 years (p = 0.046).
3
Inter-limb asymmetry responses to fatigue differed across functional tests, supporting assessment in children under both rested and fatigued conditions for injury prevention.
4
Posterolateral reach distance decreased significantly more after fatigue when the dominant leg supported the body than when the non-dominant leg supported it (p = 0.028).
5
Posterolateral reach distance showed a significant limb-by-fatigue interaction (p = 0.027), with bilateral differences present only in the rested state.

Elite male child Taekwondo athletes aged 9–11 years

The effect of fatigue on inter-limb asymmetry in single-leg jumping performance, dynamic balance, and hamstring and gastrocnemius flexibility

Publication Details
Publication Date
2021-01-09
Journal
Publisher
ISSN
Cited by
31
Access Type
Author Information
Authors
Yanfei Guan
Shannon S. D. Bredin
Qinxian Jiang
Jack Taunton
Yongfeng Li
Nana Wu
Lina Wu
Darren E. R. Warburton
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%