Physical activity program using active video games with sedentary adolescents
DOI:
https://doi.org/10.33448/rsd-v10i16.24066Keywords:
Sedentary Behavior; Exercise; Adolescent; Video games.Abstract
Objective: the aim of our study was to assess the effect of a physical activity that uses active video games in body composition, physical fitness, cardiovascular and biochemical parameters with sedentary adolescents. Methods: a non-controlled clinical trial design with a convenience sample of adolescents, separately, from ages ten to 17, of both genders. The intervention protocol consisted of physical activity with active video games (AVG), lasting two months, in 24 sessions, evolving into three levels (basic, intermediate and advanced) according to the maximum heart rate of the individuals. The adolescents’ body composition, physical fitness, cardiovascular and biochemical parameters were assessed. Data analysis was performed with a 95% confidence interval. Results: among the 14 adolescents that completed the physical training, we observed a improvement of muscle resistance (Δ= 8.26; p= 0.02) and decrease in post-exercise heart rate and systolic blood pressure (p< 0.01). However, were found a non-significant decrease in body fat percentage (Δ= -3.83; p= 0.24) and strength (Δ= 4.26; p= 0.57). A high level of satisfaction with the proposed activity was identified. Conclusion: a physical activity program based on AVG can reduce cardiovascular risk factors and improve muscle resistance in sedentary adolescents.
References
Ameryoun, A., Sanaeinasab, H., Saffari, M., & Koenig, H. G. (2018). Impact of Game-Based Health Promotion Programs on Body Mass Index in Overweight/Obese Children and Adolescents: A Systematic Review and Meta-Analysis of Randomized Controlled Trials. Childhood Obesity, 14(2), 67–80. https://doi.org/10.1089/chi.2017.0250
Baranowski, T., & Frankel, L. (2012). Let’s Get Technical! Gaming and Technology for Weight Control and Health Promotion in Children. Childhood Obesity, 8(1), 34–37. https://doi.org/10.1089/chi.2011.0103
Bezerra, M. A. A., Sousa, J. S. R., Simões Neto, J. de C., Gomes Filho, A. dos S., & Bottcher, L. B. (2020). Prevalência de inatividade física na adolescência: revisão sistemática. Health of Humans, 2(1), 1–9. https://doi.org/10.6008/cbpc2674-6506.2020.001.0001
Brum, P. C., Forjaz, C. L. de M., Tinucci, T., & Negrão, C. E. (2004). Adaptações agudas e crônicas do exercício físico no sistema cardiovascular. Rev Paul Educ Fís, 18(ago, n. esp.), 21–31.
Cameron, N. (1978). The Methods of Auxological Anthropometry. In Human Growth (pp. 35–90). Springer US. https://doi.org/10.1007/978-1-4684-2622-9_3
Carlos, F. de M., Borges Neto, J. de S., Bicalho, J. M. F., Oliveira, G. H., Campos, C. G., Bila, W. C., Lamounier, J. A., & Romano, M. C. C. (2021). Adolescentes socialmente menos favorecidos estão mais sujeitos ao sedentarismo? uma revisão sistemática. Research, Society and Development, 10(14), e305101422048. https://doi.org/10.33448/rsd-v10i14.22048
Coknaz, D., Mirzeoglu, A. D., Atasoy, H. I., Alkoy, S., Coknaz, H., & Goral, K. (2019). A digital movement in the world of inactive children: favourable outcomes of playing active video games in a pilot randomized trial. European Journal of Pediatrics, 178(10), 1567–1576. https://doi.org/10.1007/s00431-019-03457-x
Comeras-Chueca, C., Villalba-Heredia, L., Pérez-Llera, M., Lozano-Berges, G., Marín-Puyalto, J., Vicente-Rodríguez, G., Matute-Llorente, Á., Casajús, J. A., & González-Agüero, A. (2020). Assessment of Active Video Games’ Energy Expenditure in Children with Overweight and Obesity and Differences by Gender. International Journal of Environmental Research and Public Health, 17(18), 6714. https://doi.org/10.3390/ijerph17186714
Cureau, F. V., Da Silva, T. L. N., Bloch, K. V., Fujimori, E., Belfort, D. R., De Carvalho, K. M. B., De Leon, E. B., De Vasconcellos, M. T. L., Ekelund, U., & Schaan, B. D. (2016). ERICA: Leisure-time physical inactivity in Brazilian adolescents. Revista de Saude Publica, 50(supl 1), 1s–11s. https://doi.org/10.1590/S01518-8787.2016050006683
de Lima, L. R. A., Back, I. de C., Beck, C. C., & Caramelli, B. (2017). Exercício Melhora o Risco Cardiovascular, Aptidão Física e Qualidade de Vida em Crianças e Adolescentes Hiv+: Estudo Piloto. Int. j. Cardiovasc. Sci. (Impr.), 30(2), f:171--l:176.
De Onis, M., & Lobstein, T. (2010). Defining obesity risk status in the general childhood population: Which cut-offs should we use? International Journal of Pediatric Obesity, 5(6), 458–460. https://doi.org/10.3109/17477161003615583
Gabriel, K. K. P., Morrow, J. R., & Woolsey, A.-L. T. (2012). Framework for Physical Activity as a Complex and Multidimensional Behavior. Journal of Physical Activity and Health, 9(s1), S11–S18. https://doi.org/10.1123/jpah.9.s1.s11
Gambardella, J., Morelli, M. B., Wang, X., & Santulli, G. (2020). Pathophysiological mechanisms underlying the beneficial effects of physical activity in hypertension. The Journal of Clinical Hypertension, 22(2), 291–295. https://doi.org/10.1111/jch.13804
Gartlehner, G., Vander Schaaf, E. B., Orr, C., Kennedy, S. M., Clark, R., & Viswanathan, M. (2020). Screening for Hypertension in Children and Adolescents. JAMA, 324(18), 1884. https://doi.org/10.1001/jama.2020.11119
Gaya, A. G. A. R. (2016). Projeto Esporte Brasil: manual de testes e avaliação versão 2016. Https://Www.Ufrgs.Br/Proesp/Arquivos/Manual-Proesp-Br-2016.Pdf, 25.
Kabir, M., Dhruba, Q. F. F., Mahmud, H., Hasan, M. K., & Zaman, A. R. (2020). Gaming Insight: Conversion of Popular Sedentary Games into Motion-Based Form. International Journal of Human-Computer Interaction, 36(13), 1205–1215. https://doi.org/10.1080/10447318.2020.1726597
Kenney, E. L., Mozaffarian, R. S., Long, M. W., Barrett, J. L., Cradock, A. L., Giles, C. M., Ward, Z. J., & Gortmaker, S. L. (2021). Limiting Television to Reduce Childhood Obesity: Cost-Effectiveness of Five Population Strategies. Childhood Obesity, X(X), 1–7. https://doi.org/10.1089/chi.2021.0016
Léger, L. A., Mercier, D., Gadoury, C., & Lambert, J. (1988). The multistage 20 metre shuttle run test for aerobic fitness. Journal of Sports Sciences, 6(2), 93–101. https://doi.org/10.1080/02640418808729800
Liao, Y., Liao, J., Durand, C. P., & Dunton, G. F. (2014). Which type of sedentary behaviour intervention is more effective at reducing body mass index in children? A meta-analytic review. Obesity Reviews, 15(3), 159–168. https://doi.org/10.1111/obr.12112
Malachias, M. V. B., Gomes, M. A. M., Nobre, F., Alessi, A., Feitosa, A. D., & Coelho, E. B. (2016). 7ª Diretriz Brasileira de Hipertensão Arterial: capítulo 2-diagnóstico e classificação. Arquivos Brasileiros de Cardiologia, 107, 07-13.
Matsudo, S., Araujo, T., Matsudo, V., Andrade, D., Andrade, E., Oliveira, L. C., & Braggion, G. (2012). Questionário Internacional De Atividade Física (Ipaq): Estupo De Validade E Reprodutibilidade No Brasil. Atividade Física & Saúde, 6(2), 5–18. https://doi.org/10.12820/rbafs.v.6n2p5-18
Miguel, G. F. de S., Sá, A. A. R. de, Souza, J. T. de, & Naves, E. L. M. (2021). Home-based telerehabilitation: A review of remote therapy frameworks. Research, Society and Development, 10(6), e4910615489. https://doi.org/10.33448/rsd-v10i6.15489
Monedero, J., McDonnell, A. C., Keoghan, M., & O’Gorman, D. J. (2014). Modified Active Videogame Play Results in Moderate-Intensity Exercise. Games for Health Journal, 3(4), 234–240. https://doi.org/10.1089/g4h.2013.0096
Park, S.-B., Kim, M., Lee, E., Lee, D., Son, S. J., Hong, J., & Yang, W.-H. (2020). Energy System Contributions and Physical Activity in Specific Age Groups during Exergames. International Journal of Environmental Research and Public Health, 17(13), 4905. https://doi.org/10.3390/ijerph17134905
Paxton, R. J., Nigg, C., Motl, R. W., Yamashita, M., Chung, R., Battista, J., & Chang, J. (2008). Physical Activity Enjoyment Scale Short Form—Does It Fit for Children? Research Quarterly for Exercise and Sport, 79(3), 423–427. https://doi.org/10.1080/02701367.2008.10599508
Payab, M., Kelishadi, R., Qorbani, M., Motlagh, M. E., Ranjbar, S. H., Ardalan, G., Zahedi, H., Chinian, M., Asayesh, H., Larijani, B., & Heshmat, R. (2015). Association of junk food consumption with high blood pressure and obesity in Iranian children and adolescents: the Caspian‐IV Study. Jornal de Pediatria (Versão Em Português), 91(2), 196–205. https://doi.org/10.1016/j.jpedp.2014.07.008
Perez, A. J. (2013). Efeitos de diferentes modelos de periodização do treinamento aeróbio sobre parâmetros cardiovasculares, metabólicos e composição corporal de bombeiros militares. Revista Brasileira de Educação Física e Esporte, 27(3), 363–376. https://doi.org/10.1590/s1807-55092013000300004
Perrier-Melo, R. J., Costa, E. C., Farah, B. Q., & Costa, M. da C. (2020). Efeito Agudo do Exercício Intervalado versus Contínuo sobre a Pressão Arterial: Revisão Sistemática e Metanálise. Revista Brasileira de Medicina Do Esporte, 115(1), 5–14. https://doi.org/10.36660/abc.20190107
Saevarsson, E. S., Rognvaldsdottir, V., Stefansdottir, R., & Johannsson, E. (2021). Organized Sport Participation, Physical Activity, Sleep and Screen Time in 16-Year-Old Adolescents. International Journal of Environmental Research and Public Health, 18(6), 3162. https://doi.org/10.3390/ijerph18063162
Slaughter, A. M. H., Lohman, T. G., Boileau, R. A., Horswill, C. A., Stillman, R. J., Loan, M. D. V. A. N., & Bemben, D. A. (1988). Skinfold Equations for Estimation of Body Fatness in Children and Youth Published by : Wayne State University Press Stable URL : http://www.jstor.org/stable/41464064 . Human Biology, 60(5), 709–723.
Staiano, A. E., Beyl, R. A., Guan, W., Hendrick, C. A., Hsia, D. S., & Newton, R. L. (2018). Home-based exergaming among children with overweight and obesity: a randomized clinical trial. Pediatric Obesity, 13(11), 724–733. https://doi.org/10.1111/ijpo.12438
Tozo, T. A., Pereira, B. O., Menezes, F. J. de, Montenegro, C. M., Moreira, C. M. M., & Leite, N. (2020). Medidas Hipertensivas em Escolares: Risco da Obesidade Central e Efeito Protetor da Atividade Física Moderada-Vigorosa. Arquivos Brasileiros de Cardiologia, 115(1), 42–49. https://doi.org/10.36660/abc.20180391
Urbana, M., Rondon, P. B., & Brum, P. C. (2003). Exercício físico como tratamento não-farmacológico da hipertensão arterial. Revista Brasileira de Hipertensão, 10(11), 134–139.
Yelling, M., Lamb, K. L., & Swaine, I. L. (2002). Validity of a Pictorial Perceived Exertion Scale for Effort Estimation and Effort Production During Stepping Exercise in Adolescent Children. European Physical Education Review, 8(2), 157–175. https://doi.org/10.1177/1356336X020082007
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Copyright (c) 2021 Maria Luísa Melo Barbosa; Luís Felipe Melo Barbosa ; Ciane de Jesus Gomes Vieira; Auxiliadora Damianne P. V. Costa; Luiz Rodrigo Augustemak de Lima; Mércia Lamenha Medeiros
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