The purpose of this cross-sectional study was to analyze changes in normalized surface electromyography (sEMG) signals for the , , , , and muscles occurring during a 400 m indoor sprint between subsequent curved sections of the track. Ten well-trained female sprinters (age: 21 ± 4 years; body mass: 47 ± 5 kg; body height: 161 ± 7 cm; 400 m personal best: 52.4 ± 1.1 s) performed an all-out 400 m indoor sprint. Normalized sEMG signals were recorded bilaterally from the selected lower limb muscles. The two-way ANOVA (curve × side) revealed no statistically significant interaction. However, the main effect analysis showed that normalized sEMG signals significantly increased in subsequent curves run for all the studied muscles: ( = 0.003), ( < 0.0001), ( = 0.044), ( = 0.001), and ( = 0.023), but differences between limbs were significant only for the ( = 0.012). The results suggest that the normalized sEMG signals for the lower limb muscles increased in successive curves during the 400 m indoor sprint. Moreover, the of the inner leg is highly activated while running curves; therefore, it should be properly prepared for high demands, and attention should be paid to the possibility of the occurrence of a negative adaptation, such as asymmetries.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8701744PMC
http://dx.doi.org/10.3390/ijerph182413177DOI Listing

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