The Effect of BungeeSkate^TM Training vs Lateral Plyometric Jumps on On-Ice Acceleration and Speed

Authors

  • Maxwell Glaser University of Wisconsin Eau Claire San Jose State University
  • Jeffrey Janot University of Wisconsin-Eau Claire
  • Kyle Geiger University of Wisconsin - Eau Claire University of Wisconsin - Lacrosse Masters of Science at UWL
  • Ashley Baugher University of Wisconsin - Eau Claire University of Wisconsin - Lacrosse
  • Taylor Bowker University of Wisconsin - Eau Claire Sherman College of Chiropractic

DOI:

https://doi.org/10.12922/jshp.v8i1.164

Keywords:

hockey, resistance band, female hockey, interval training, top speed, plyometric

Abstract

Background/Purpose: Ice hockey is an explosive, physical sport that demands multiple short bursts of extremely vigorous work. Sport-specific on-ice training to improve game performance is a rarity for hockey players due to the high costs and unavailability of ice time. Therefore, the aim of the present study is to investigate the effectiveness of short on-ice resistance training, as compared to traditional land training on skating performance in Division III Women’s college ice hockey players. The present study examined the difference in acceleration, top speed, and speed between the two training groups (on-ice BungeeSkateTM vs. off-ice Russian Box). Methods: A total of 20 Division III female hockey players (age range: 18-21 years) participated in this study. Each participant underwent an initial 10-minute meeting where anthropometric measures were taken. Participants were randomly assigned into one of the two training conditions: BungeeSkateTM and a Russian box lateral plyometric. Each training session lasted for 15 minutes and occurred twice a week immediately following team practice. Results: A two-way repeated measures ANOVA indicated no group effect for Acceleration, Speed, and Top Speed (P > .05). No time effect was seen for Acceleration and Top Speed, while significant improvements was seen in Speed from pre- (6.87 ± .25 sec) and post-test (6.73 ± .17 sec). Conclusions: A 6-week BungeeSkateTM training intervention has a similar effect to off-ice training on acceleration and top speed, but can help to improve speed in Division III female college hockey players in relatively short training sessions compared to. On-ice resistance training could be beneficial for hockey coaches and players who are looking to maximize training benefits with limited ice time.

Author Biographies

  • Maxwell Glaser, University of Wisconsin Eau Claire San Jose State University
    Masters of Art, San Jose State University
  • Jeffrey Janot, University of Wisconsin-Eau Claire
    Dr. Jeffrey Janot is a professor at the University of Wisconsin-Eau Claire. He is the advisor of this research paper, as well as has numerous papers submitted through various research publication journals.

References

Carey, D. G., Drake, M. M., Pliego, G. J., & Raymond, R. L. (2007). Do hockey players need aerobic fitness? Relation between VO2max and fatigue during high intensity intermittent ice skating. Journal of Strength and Conditioning Research / National Strength & Conditioning Association, 21(3), 963-966.

Montgomery, D. L. (1988). Physiology of ice hockey. Sports Medicine (Auckland, N.Z.), 5(2), 99-126.

Behm, D. G., Wahl, M. J., Button, D. C., Power, K. E., & Anderson, K. G. (2005). Relationship between hockey skating speed and selected performance measures. Journal of Strength & Conditioning Research, 19(2), 326-331.

Farlinger, C. M., & Fowles, J. R. (2008). The effect of sequence of skating-specific training on skating performance. International Journal of Sports Physiology And Performance, 3(2), 185-198.

Janot, J. M., Auner, K. A., Emberts, T. M., Kaatz, R. M., Matteson, K. M., Muller, E. A. and Cook, M. (2013). The effects of BungeeSkate training on measures of on ice acceleration and speed. International Journal of Sports Physiology and Performance, 8(4), 419-27.

Bracko, M. R., & George, J. D. (2001). Prediction of ice skating performance with off-ice testing in women's ice hockey players. Journal Of Strength And Conditioning Research / National Strength & Conditioning Association, 15(1), 116-122.

Janot, J. M., Beltz, N. M., & Dalleck, L. D. (2015). Multiple off-ice performance variables predict on-ice skating performance in male and female division III ice hockey players. Journal of Sports Science & Medicine, 14(3), 522-529.

Nightingale, S. C., Miller, S., & Turner, A. (2013). The usefulness and reliability of fitness testing protocols for ice hockey players: A literature review. Journal of Strength & Conditioning Research, 27(6), 1742-1748.

Runner, A. R., Lehnhard, R., Butterfield, S., Tu, S., & O'Neill, T. (2015). Predictors of speed using off-ice measures of college hockey players. Journal of Strength & Conditioning Research.

Durocher, J. J., Jensen, D. D., Arredondo, A. G., Leetun, D. T., & Carter, J. R. (2008). Gender differences in hockey players during on-ice graded exercise. Journal of Strength & Conditioning Research, 22(4), 1327-1331.

Lee, C., Lee, S., & Yoo, J. (2014). The effect of a complex training program on skating abilities in ice hockey players. Journal of Physical Therapy Science, 26(4), 533 - 537.

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Published

2020-09-25

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Section

Original Research Articles

How to Cite

The Effect of BungeeSkate^TM Training vs Lateral Plyometric Jumps on On-Ice Acceleration and Speed. (2020). Journal of Sport and Human Performance, 8(1). https://doi.org/10.12922/jshp.v8i1.164