Int J Sports Med 2002; 23(2): 125-129
DOI: 10.1055/s-2002-20132
Training and Testing
© Georg Thieme Verlag Stuttgart · New York

Aerobic Demands of the Dance Simulation Game

B.  Tan1 , A.  R.  Aziz1 , K.  Chua1 , K.  C.  Teh1
  • 1Sports Medicine and Research Centre, Singapore
Further Information

Publication History

June 25, 2001

Publication Date:
13 February 2002 (online)

Abstract

The purpose of this study was to assess the intensity and energy cost of dance simulation in relation to the American College of Sports Medicine (ACSM) recommendations on the quantity and quality of exercise for developing and maintaining cardiorespiratory fitness, and to assess its safety. Forty subjects (21 males and 19 females, age 17.5 ± 0.7 years) had their heart rate (HR) and oxygen consumption (V˙O2) measured during maximal treadmill exercise and during a dance simulation game at a self-selected level of difficulty. They were monitored for injuries during and after the study. The results showed a mean HR of 137 beats × min-1 (139 beats × min-1 for males and 136 beats × min-1 for females) and a mean V˙O2 of 24.6 ml × kg-1 × min-1 (25.3 ml × kg-1 × min-1 for males and 23.8 ml × kg-1 × min-1 for females) during the dance simulation game test, with an estimated energy expenditure of 480 W (550 W for males and 410 W for females). The dance intensity only just meets the minimum ACSM guidelines, so dancer-players will need to play for extended periods to improve or maintain cardiorespiratory fitness or to lose weight. No injuries occurred during 201 hours of dance time.

References

  • 1 Borg G AV. Psychological basis of physical exertion.  Med Sci Sports Exerc. 1982;  14 377-381
  • 2 Hausswirth C, Bigard A X, Le Chevalier M. The Cosmed K4 Telemetry System as an accurate device for oxygen uptake measurements during exercise.  Int J Sports Med. 1997;  18 449-453
  • 3 Igbanugo V, Gutin B. The energy cost of aerobic dancing.  Res Q. 1978;  49 308-315
  • 4 PAR-Q Validation Report. British Columbia Ministry of Health 1978
  • 5 Pollock M L, Gaesser G A, Butcher J D, Després J P, Dishman J K, Franklin  B A, Garber C E. ACSM position stand on the recommended quantity and quality of exercise for developing and maintaining cardiorespiratory and muscular fitness, and flexibility in adults.  Med Sci Sports Exerc. 1998;  30 975-991
  • 6 Stanforth D, Stanforth P R, Velasquez K S. Aerobic requirement of bench stepping.  Int J Sports Med. 1992;  14 129-133
  • 7 Swain D P, Leutholtz B C. Heart rate reserve is equivalent to %V˙O2reserve, not to %V˙O2max.  Med Sci Sports Exerc. 1997;  29 410-414
  • 8 Swain D P. Energy cost calculations for exercise prescription: An update.  Sports Med. 2000;  30 17-22
  • 9 Walker J L, Murray T D, Jackson A S, Morrow Jr J R, Michaud T J. The energy cost of horizontal walking and running in adolescents.  Med Sci Sports Exer. 1999;  31 311-322
  • 10 Williford H N, Blessing D L, Scharff M. The energy cost of different intensities of high and low-impact aerobic dance. Abstract.  Med Sci Sports Exer. 1988;  20 88
  • 11 Williford H N, Richards L A, Scharff-Olson M, Brown J, Blessing D, Duey W J. Bench stepping and running in women: Changes in fitness and injury status.  J Sports Med and Physical Fitnes. 1998;  38 221-226
  • 12 Wilmore J H, Costill D L. Physiology of Sport and Exercise. Champaign, IL; Human Kinetics 1994: 113

B. Tan

Sports Medicine and Research Centre · Singapore Sports Council

15 Stadium Road · National Stadium · Singapore 397718 ·

Phone: +65 34 09810

Fax: +65 34 52795

Email: benedict_tan@ssc.gov.sg

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