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Related Experiment Video

Updated: Nov 1, 2025

A Novel Application of Musculoskeletal Ultrasound Imaging
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Ice Hockey Forward Skating Force-Velocity Profiling Using Single Unloaded vs. Multiple Loaded Methods.

Jerome Perez1,2, Gaël Guilhem1, Franck Brocherie1

  • 1Laboratory Sport, Expertise and Performance (EA 7370), French Institute of Sport (INSEP), Paris, France; and.

Journal of Strength and Conditioning Research
|June 27, 2021
PubMed
Summary

Comparing ice hockey skating performance, a single unloaded sprint test is comparable to multiple loaded sprints for determining force-velocity relationships. The unloaded method offers a practical, fatigue-free alternative for profiling.

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Area of Science:

  • Sports Science
  • Biomechanics
  • Ice Hockey Performance Analysis

Background:

  • Accurate assessment of skating biomechanics is crucial for optimizing ice hockey player performance.
  • Force-velocity profiling provides valuable insights into an athlete's mechanical capabilities during movement.
  • Existing methods for force-velocity profiling in ice hockey have limitations regarding time and resources.

Purpose of the Study:

  • To compare the validity and reliability of a single unloaded skating sprint method versus multiple loaded skating sprint methods for determining force-velocity relationships in female ice hockey players.
  • To assess the practical applicability of each method in different training and testing scenarios.

Main Methods:

  • Ten female ice hockey players completed one maximal unloaded skating sprint test measured via radar gun.
  • Players also performed four resisted skating sprints against a robotic horizontal resistance system with loads ranging from 3 kg to 75% of body mass.
  • Key force-velocity relationship variables (F0, V0, Pmax, Vopt, SFV) were calculated for both methods and statistically compared.

Main Results:

  • No significant statistical differences were found between the unloaded and loaded methods for any of the determined mechanical variables (p > 0.05).
  • While moderate to high correlations (r = 0.50–0.84) existed between methods, large errors (ES = 0.66–1.71) were observed, indicating variability.
  • Both methods yielded comparable force-velocity relationships for forward on-ice skating sprints.

Conclusions:

  • A single, fatigue-free unloaded skating sprint test is a viable and practical alternative to multiple loaded sprints for force-velocity profiling in ice hockey.
  • The unloaded method is suitable for situations with time constraints or when simple profiling is needed.
  • Multiple loaded methods may be more beneficial for detailed evaluation and individualized training prescription for experienced players accustomed to resistance training.