Key result
A Nordic hamstring curl intervention significantly increased eccentric hamstring strength compared to a do-as-usual control immediately post-intervention (31.81 Nm−1 vs. 6.44 Nm−1, P=0.001).
Why the study?
Does a Nordic hamstring curl intervention improve eccentric hamstring strength, sprint speed, and change-of-direction performance in male team sports athletes?
RCT (n=14)
randomised
Does a Nordic hamstring curl intervention improve eccentric hamstring strength, sprint speed, and change-of-direction performance in male team sports athletes?
Absolute Event Rate: 31.81% vs 6.44%
p-value: p=0.001
A Nordic hamstring curl intervention significantly improves eccentric hamstring strength, sprint speed, and change-of-direction performance in male team sports athletes, with speed and COD improvements maintained after a 3-week detraining period.
Supports Nordic hamstring curl inclusion in male team-sport training; confirms RCT efficacy for eccentric strength gains.
This randomised controlled trial investigated changes in eccentric hamstring strength, 10m sprint speed, and change-of-direction (COD) performance immediately post Nordic hamstring curl (NHC) intervention and following a 3-week detraining period.Fourteen male team sports athletes were randomised to a do-as-usual control group (CG; n = 7) or to a NHC intervention group (NHC; n = 7). Isokinetic dynamometry at 180°/s evaluated eccentric hamstring strength immediately post-intervention as the primary outcome measure. Secondary outcomes included 10 m sprint time and COD. Each outcome was measured, pre, immediately post-intervention and following a 3-week detraining period.Immediately post-intervention significant group differences were observed in the NHC group for eccentric hamstring strength (31.81 Nm−1 vs. 6.44 Nm−1, P = 0.001), COD (−0.12 s vs. 0.20 s; P = 0.003) and sprint (- 0.06 s vs. 0.05 s; P = 0.024) performance. Performance improvements were maintained following a detraining period for COD (−0.11 s vs. 0.20 s; P = 0.014) and sprint (−0.05 s vs. 0.03 s, P = 0.031) but not eccentric hamstring strength (15.67 Nm−1 vs. 6.44 Nm−1, P = 0.145) These findings have important implications for training programmes designed to reduce hamstring injury incidence, whilst enhancing physical qualities critical to sport.
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Siddle et al. (2018) conducted an RCT in team sports athletes (n=14). Nordic hamstring curl (NHC) vs. do-as-usual control was evaluated on eccentric hamstring strength immediately post-intervention (p=0.001). A Nordic hamstring curl intervention significantly increased eccentric hamstring strength compared to a do-as-usual control immediately post-intervention (31.81 Nm−1 vs. 6.44 Nm−1, P=0.001).
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