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April 19, 2026Sports Biomechanics0 citationsOpen Access

Kinematic and electromyographic effects of different execution modalities during the Nordic Hamstring Exercise

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JBJ. BergmannMSM SchmidtTJT. Jaitner

Key Points

  • The aim is to investigate how different execution modalities of the Nordic Hamstring Exercise affect hamstring muscle activation and break-point angles.
  • Participants completed two familiarisation sessions before performing three NHE modalities.
  • Execution modalities included partner fixation, rigid heel fixation, and a specialized training device.
  • Kinematic data measured break-point angles, while surface electromyographic signals recorded muscle activity.
  • The training device resulted in the most extended knee positions (56.0° ± 13.8) compared to other modalities.
  • Significantly higher electromyographic activity was observed in the training device modality.
  • Break-point angle differences were statistically significant, indicating impacts on movement mechanics.

Abstract

The Nordic Hamstring Exercise (NHE) is widely used for eccentric hamstring strengthening and injury prevention. This study examined how three criteria-based NHE execution modalities affect break-point angle (BPA) and hamstring muscle activation. It was hypothesised that increased execution quality results in greater muscular activation and more extended BPAs. Forty-two participants completed two familiarisation sessions before performing three NHE modalities using partner fixation, rigid heel fixation, and a training device providing rigid heel fixation, controlled kneeling height and knee positioning. Kinematic data determined BPAs, while surface electromyographic (EMG) signals recorded activity of M. biceps femoris and M. semitendinosus. Friedman tests with Wilcoxon post-hoc comparisons assessed differences. Significant BPA differences occurred (p p < 0.01). The more extended knee positioning was accompanied by altered thigh and shank orientation. These findings indicate that NHE execution modality substantially influences movement mechanics and neuromuscular demand. For standardised testing and training, rigid heel fixation combined with controlled kneeling height and consistent setup conditions is recommended.

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Cite This Study

Bergmann et al. (2026) studied this question.

synapsesocial.com/papers/69e47376010ef96374d8f49chttps://doi.org/10.1080/14763141.2026.2657898
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