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Educational Psychology
An International Journal of Experimental Educational Psychology
Volume 40, 2020 - Issue 5
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Articles

Which instructional models influence more on perceived exertion, affective valence, physical activity level, and class time in physical education?

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Pages 608-621 | Received 28 May 2018, Accepted 25 Apr 2019, Published online: 10 May 2019

References

  • Bendiksen, M., Williams, C. A., Hornstrup, T., Clausen, H., Kloppenborg, J., Shumikhin, D., … Krustrup, P. (2014). Heart rate response and fitness effects of various types of physical education for 8- to 9-year-old schoolchildren. European Journal of Sport Science, 14(8), 861–869. doi:10.1080/17461391.2014.884168
  • Boddy, L. M., Fairclough, S. J., Atkinson, G., & Stratton, G. (2012). Changes in cardiorespiratory fitness in 9- to 10.9-year-old children: SportsLinx 1998–2010. Medicine and Science in Sports and Exercise, 44(3), 481–486. doi:10.1249/MSS.0b013e3182300267
  • Chinchilla, J. L., & López, I. (2010). Effect of Class Content on practice time in the physical education of elementary and high school students. Studia Sportive, 4(2), 77–84. doi:10.5817/StS2010-2-9
  • Coffman, M. J., Reeve, C. L., Butle, S., Keeling, M., & Talbot, L. A. (2016). Accuracy of the Yamax CW-701 Pedometer for measuring steps in controlled and free-living conditions. Digital Health, 2, 1–7. doi:10.1177/2055207616652526
  • Collings, P. J., West, K., Väistö, J., Winjndaele, K., Atkin, A. J., Haapala, E. A., … Lakka, T. A. (2017). Cross-sectional associations of objectively-measured physical activity and sedentary time with body composition and cardiorespiratory fitness in mid-childhood: The PANIC study. Sports Medicine, 47(4), 769–780. doi:10.1007/s40279-016-0606-x
  • Edmunds, J., Ntoumanis, N., & Duda J. (2008). Testing a self-determination theory-based teaching style intervention in the exercise domain. European Journal of Social Psychology, 38, 375–388. doi:10.1002/ejsp.463
  • Eime, R. M., Young, J. A., Harvey, J. T., Charity, M. J., & Payne, W. R. (2013). A systematic review of the psychological and social benefits of participation in sport for children and adolescents: Informing development of a conceptual model of health through sport. International Journal of Behavioural Nutrition and Physical Activity, 10(135), 1–14. doi:10.1186/1479-5868-10-98
  • Ekelund, U., Luan, J., Sherar, L. B., Esliger, D. W., Griew, P., Cooper, A., & International Children’s Accelerometry Database (ICAD) Collaborators. (2012). Moderate to vigorous physical activity and sedentary time and cardio-metabolic risk factors in children and adolescents. Journal of the American Medical Association, 307(7), 704–712. doi:10.1001/jama.2012.156
  • Fairclough, S. J., & Stratton, G. (2005). Improving health-enhancing physical activity in girls’ physical education. Health Education Research, 20(4), 448–457. doi:10.1093/her/cyg137
  • Fairclough, S. J., McGrane, B., Sanders, G., Taylor, S., Owen, M., & Curry, W. (2016). A non-equivalent group pilot trial of a school-based physical activity and fitness intervention for 10-11 year old English children: born to move. BMC Public Health, 16(1), 861–875. doi:10.1186/s12889-016-3550-7
  • Focht, B. C. (2009). Brief walks in outdoor and laboratory environments: Effects on affective responses, enjoyment, and intentions to walk for exercise. Research Quarterly for Exercise and Sport, 80(3), 611–620. doi:10.1080/02701367.2009.10599600
  • García, D. A., Chávez, M. E., Cruz, C., Guedea, J. C., Velazquez, G., & Zubiaur, M. (2018). Impact of a motor activity programme with executive functions to strengthen the integral development of the child. Sportis, 4(1), 37–58. doi:10.17979/sportis.2018.4.1.2060
  • Gurvitch, R., & Metzler, M. (2010). Keeping the purpose in mind: The implementation of instructional models in physical education settings. Journal for Physical and Sport Educators, 23(3), 32–35. doi:10.1080/08924562.2010.10590875
  • Gurvitch, R., & Metzler, M. (2013). Aligning learning activities with instructional models. Journal of Physical Education, Recreation & Dance, 84(3), 30–37. doi:10.1080/07303084.2013.767719
  • Hardy, C. J., & Rejeski, W. J. (1989). Not what, but how one feels: The measurement of affect during exercise. Journal of Sport and Exercise Psychology, 11, 304–317. doi:10.1123/jsep.11.3.304
  • Harvey, S., Song, Y., Baek, J. H., & van der Mars, H. (2015), Two sides of the same coin. Student physical activity levels during a game-centred soccer unit. European Physical Education Review, 22(4), 411–429. doi:10.1177/1356336X15614783
  • Hernández-Álvarez, J. L., del-Campo-Vecino, J., Martínez-de-Haro, V., & Moya-Morales, J. M. (2010). Perception of exertion in physical education and its relationship to guidelines on physical activity. Revista Internacional de Medicina y Ciencias de la Actividad Física y el Deporte, 10(40), 609–619.
  • Hopkins, W. G., Marshall, S. W., Batterham, A. M., & Hanin, J. (2009). Progressive statistics for studies in sports medicine and exercise science. Medicine and Science in Sports and Exercise, 41, 3–13. doi:10.1249/MSS.0b013e31818cb278
  • Koka, A., & Hagger, M. S. (2010). Perceived teaching behaviors and self-determined motivation in physical education: A test of self-determination theory. Research Quarterly in Exercise and Sports, 81(1). 76–86. doi:10.1080/02701367.2010.10599630
  • Lonsdale, C., Rosenkranz, R. R., Peralta, L. R., Bennie, A., Fahey, P., & Lubans D. R. (2013). A systematic review and meta-analysis of interventions designed to increase moderate-to-vigorous physical activity in school physical education lessons. Preventive Medicine, 56(2), 152–161. doi:10.1016/j.ypmed.2012.12.004
  • Lu, C., Stolk, R. P., Sauer, P. J. J., Sijtsma, A., Wiersma, R., Huang, G., & Corpeleijn, E. (2017). Factors of physical activity among Chinese children and adolescents: A systematic review. International Journal of Behavioral Nutrition and Physical Activity, 14, 36. doi:10.1186/s12966-017-0486-y
  • McClain, Z. D., Yun, J., & van der Mars, H. (2014). Effects of instructional approaches on enjoyment and physical activity during physical education. The Global Journal of Health and Physical Education Pedagogy, 3(1), 18–29.
  • McNamara, E., Hudson, Z., & Taylor, S. J. C. (2010). Measuring activity levels of young people: The validity of pedometers. British Medical Bulletin, 95(1), 121–137. doi:10.1093/bmb/ldq016
  • Metzler, M. (2011). Instructional models for physical education (3rd ed.). Scottsdale, AZ: Holcomb Hathaway.
  • Olmedo, J. A. (2000). Strategies to increase the time of motor practice in the school Physical Education lessons. Apunts Educación Física y Deportes, 59, 22–30.
  • Panksepp, J. (2012). In defense of multiple core affects. In P. Zachar, & R. D. Ellis (Eds.), Categorical vs dimensional models of a seminar on the theories of Panksepp and Russel. Amsterdan, Netherlands: John Benjamins Publishing Company.
  • Parfitt, G., Rose, E. A., & Burgess, W. M. (2006). The psychological and physiological responses of sedentary individuals to prescribed and preferred intensity exercise. British Journal of Health Psychology, 11(1), 39–53. doi:10.1348/135910705X43606
  • Pate, R. R., Davis, M. G., Robinson, T. M., Stone, E. J., McKenzie, T. L., & Young, J. C. (2006). Promoting physical activity in children and youth: A leadership role for schools: a scientific statement from the American Heart Association Council on Nutrition, Physical Activity, and Metabolism (Physical Activity Committee) in collaboration with the Councils on Cardiovascular Disease in the Young and Cardiovascular Nursing. Circulation, 114, 1214–1224. doi:10.1161/circulationaha.106.177052
  • Pieron, M. (2005). Research on teaching physical activities and sport: Paradigms and selected results. Italian Journal of Sport Sciences, 12, 4–17.
  • Raedeke, T. D., Focht, B. C., & Scales D. (2007). Social environmental factors and psychological responses to acute exercise for socially physique anxious females. Psychology of Sport and Exercise, 8, 463–476. doi:10.1016/j.psychsport.2006.10.005
  • Rice, K. R., Gammon, C., Pfieffer, K., & Trost, S. G. (2015). Age related differences in the validity of the OMNI perceived exertion scale during lifestyle activities. Pediatric Exercise Science, 27(1), 95–101. doi:10.1123/pes.2014-0007
  • Rink, J.E. (2003). Effective instruction in physical education. In S. J. Silverman & C. D. Ennis (Eds.), Student learning in physical education: Applying research to enhance the instruction (pp. 165–186). Champaign, IL: Human Kinetics.
  • Robertson, R. J., Goss, F. L., Boer, N. F., Peoples, J. A., Foreman, A. J., Dabayebeh, I., … Thompkins, T. (2000). Children’s OMNI scale of perceived exertion: Mixed gender and race validation. Medicine & Science in Sports & Exercise, 32, 452–458. doi:10.1097/00005768-200002000-00029
  • Rodríguez, I., Zambrano, L., & Manterola, C. (2016). Criterion-related validity of perceived exertion scales in healthy children: A systematic review and meta-analysis. Archivos Argentinos de Pediatria, 114(2), 120–128. doi:10.5546/aap.2016.eng.120
  • Rose, E. A., & Parfitt, G. (2010). Pleasant for some and unpleasant for others: A protocol analysis of the cognitive factors that influence affective responses to exercise. International Journal of Behavioural Nutrition and Physical Activity, 7, 1–15. doi:10.1186/1479-5868-7-15
  • Schneider, M. L., & Kwan, B. M. (2013). Psychological need satisfaction, intrinsic motivation and affective response to exercise in adolescents. Psychology of Sport and Exercise, 14(5), 776–785. doi:10.1016/j.psychsport.2013.04.005
  • Silverman, S. (2005) Thinking long term: Physical education’s role in movement and mobility. Quest, 57, 138–147. doi:10.1080/00336297.2005.10491847
  • Vallabhajosula, S., Holder, J. B., & Bailey E. K. (2016). Effect of exergaming on physiological response and enjoyment during recess in elementary school-aged children: A Pilot Study. Games for Health Journal, 5(5), 325–332. doi:10.1089/g4h.2016.0032
  • Van Landuyt, L. M., Ekkekakis, P., Hall, E. E., & Petruzzello, S. J. (2000). Throwing the mountains into the lakes: On the perils of nomothetic conceptions of the exercise affect relationship. Journal of Sports and Exercise Psychology, 22, 208–234. doi:10.1123/jsep.22.3.208
  • Wall, M., & Côté, J. (2007). Developmental activities that lead to dropout and investment in sport. Physical Education and Sport Pedagogy, 12(1): 77–87. doi:10.1080/17408980601060358
  • Waring, M., Warburton, P., & Coy, M. (2007). Observation of children’s physical activity levels in primary school: Is the school an ideal setting for meeting government activity targets? European Physical Education Review, 13(1), 25–40. doi:10.1177/1356336X07072672
  • Williams, D. M., Dunsiger, S., Jennings, E. G., & Marcus, B. H. (2012). Does affective valence during and immediately following a 10-min walk predict concurrent and future physical activity? Annals of Behavioral Medicine, 44(1), 43–51. doi:10.1007/s12160-012-9362-9
  • World Health Organization. (2010). Global recommendations on physical activity for heath. Switzerland: WHO Press.

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