Los efectos neurofisiológicos de la actividad física en los niños: revisión sistemática

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DOI:

https://doi.org/10.24310/riccafd.2022.v11i2.14533

Palabras clave:

actividad física, niños, función neurofisiológica, cambios estructurales y beneficios

Resumen

La práctica de actividad física regular proporciona varios beneficios relacionados principalmente con la mejora de la salud y la calidad de vida, así como con el control de los factores de riesgo de enfermedades, un tema ampliamente reconocido en la actualidad. Sin embargo, estudios recientes han demostrado que la relación entre actividad física y cognición está permitiendo grandes avances y resultados positivos. En el presente trabajo y mediante una revisión sistemática, se recopila la evidencia actual que estable la causalidad sobre los cambios neurofisiológicos en la estructura cerebral de niños sanos y con patologías. Un total de 23 estudios fueron seleccionados y analizados mediante los que se pudo concluir que existe una asociación beneficiosa entre la actividad física a largo plazo y los cambios en las funciones neurofisiológicas.

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de Greeff JW, Bosker RJ, Oosterlaan J, Visscher C, Hartman E. Effects of physical activity on executive functions, attention and academic performance in preadolescent children: a meta-analysis. Journal of science and medicine in sport. 2018;21(5):501-7.

Hillman CH, Erickson KI, Kramer AF. Be smart, exercise your heart: exercise effects on brain and cognition. Nature reviews neuroscience. 2008;9(1):58-65.

Verloigne M, Van Lippevelde W, Maes L, Y?ld?r?m M, Chinapaw M, Manios Y, Androutsos O, Kovács É, Bringolf-Isler B, Brug J, De Bourdeaudhuij I. Levels of physical activity and sedentary time among 10-to 12-year-old boys and girls across 5 European countries using accelerometers: an observational study within the ENERGY-project. International journal of behavioral nutrition and physical activity. 2012;9(1):1-8.

Gabel L, Ridgers ND, Della Gatta PA, Arundell L, Cerin E, Robinson S, Daly RM, Dunstan DW, Salmon J. Associations of sedentary time patterns and TV viewing time with inflammatory and endothelial function biomarkers in children. Pediatric obesity. 2016;11(3):194-201.

Van Praag H, Kempermann G, Gage FH. Running increases cell proliferation and neurogenesis in the adult mouse dentate gyrus. Nature neuroscience. 1999 Mar;2(3):266-70.

Hopkins ME, Nitecki R, Bucci DJ. Physical exercise during adolescence versus adulthood: differential effects on object recognition memory and brain-derived neurotrophic factor levels. Neuroscience. 2011 Oct 27;194:84-94.

Smith AL, Hoza B, Linnea K, McQuade JD, Tomb M, Vaughn AJ, Shoulberg EK, Hook H. Pilot physical activity intervention reduces severity of ADHD symptoms in young children. Journal of attention disorders. 2013 Jan;17(1):70-82.

Ng QX, Ho CY, Chan HW, Yong BZ, Yeo WS. Managing childhood and adolescent attention-deficit/hyperactivity disorder (ADHD) with exercise: a systematic review. Complementary therapies in medicine. 2017;34:123-8.

Suarez-Manzano S, Ruiz-Ariza A, De La Torre-Cruz M, Martínez-López EJ. Acute and chronic effect of physical activity on cognition and behaviour in young people with ADHD: A systematic review of intervention studies. Research in developmental disabilities. 2018;77:12-23.

Yau PL, Castro MG, Tagani A, Tsui WH, Convit A. Obesity and metabolic syndrome and functional and structural brain impairments in adolescence. Pediatrics. 2012;130(4):e856-64.

Veronese N, Facchini S, Stubbs B, Luchini C, Solmi M, Manzato E, Sergi G, Maggi S, Cosco T, Fontana L. Weight loss is associated with improvements in cognitive function among overweight and obese people: A systematic review and meta-analysis. Neuroscience & Biobehavioral Reviews. 2017;72:87-94.

Querido JS, Godwin JB, Sheel AW. Intermittent hypoxia reduces cerebrovascular sensitivity to isocapnic hypoxia in humans. Respiratory physiology & neurobiology. 2008;161(1):1-9.

Dishman RK, Berthoud HR, Booth FW, Cotman CW, Edgerton VR, Fleshner MR, Gandevia SC, Gomez?Pinilla F, Greenwood BN, Hillman CH, Kramer AF. Neurobiology of exercise. Obesity. 2006;14(3):345-56.

Colcombe SJ, Erickson KI, Scalf PE, Kim JS, Prakash R, McAuley E, Elavsky S, Marquez DX, Hu L, Kramer AF. Aerobic exercise training increases brain volume in aging humans. The Journals of Gerontology Series A: Biological Sciences and Medical Sciences. 2006;61(11):1166-70.

Caspersen CJ, Powell KE, Christenson GM. Physical activity, exercise, and physical fitness: definitions and distinctions for health-related research. Public health reports. 1985;100(2):126.

Chaddock L, Erickson KI, Prakash RS, VanPatter M, Voss MW, Pontifex MB, Raine LB, Hillman CH, Kramer AF. Basal ganglia volume is associated with aerobic fitness in preadolescent children. Developmental neuroscience. 2010;32(3):249-56.

Chaddock L, Erickson KI, Prakash RS, Voss MW, VanPatter M, Pontifex MB, Hillman CH, Kramer AF. A functional MRI investigation of the association between childhood aerobic fitness and neurocognitive control. Biological psychology. 2012;89(1):260-8.

Pontifex MB, Saliba BJ, Raine LB, Picchietti DL, Hillman CH. Exercise improves behavioral, neurocognitive, and scholastic performance in children with attention-deficit/hyperactivity disorder. The Journal of pediatrics. 2013;162(3):543-51.

Moore RD, Drollette ES, Scudder MR, Bharij A, Hillman CH. The influence of cardiorespiratory fitness on strategic, behavioral, and electrophysiological indices of arithmetic cognition in preadolescent children. Frontiers in human neuroscience. 2014 May 5;8:258.

Chaddock L, Pontifex MB, Hillman CH, Kramer AF. A review of the relation of aerobic fitness and physical activity to brain structure and function in children. Journal of the international Neuropsychological Society. 2011;17(6):975-85.

Valkenborghs SR, Noetel M, Hillman CH, Nilsson M, Smith JJ, Ortega FB, Lubans DR. The impact of physical activity on brain structure and function in youth: a systematic review. Pediatrics. 2019;144(4).

Donnelly JE, Hillman CH, Castelli D, Etnier JL, Lee S, Tomporowski P, Lambourne K, Szabo-Reed AN. Physical activity, fitness, cognitive function, and academic achievement in children: a systematic review. Medicine and science in sports and exercise. 2016;48(6):1197.

Chan AS, Han YM, Sze SL, Lau EM. Neuroenhancement of memory for children with autism by a mind–body exercise. Frontiers in psychology. 2015;6:1893.

Masterson TD, Kirwan CB, Davidson LE, Larson MJ, Keller KL, Fearnbach SN, Evans A, LeCheminant JD. Brain reactivity to visual food stimuli after moderate-intensity exercise in children. Brain imaging and behavior. 2018;12(4):1032-41.

Chaddock-Heyman L, Erickson KI, Kienzler C, Drollette ES, Raine LB, Kao SC, Bensken J, Weisshappel R, Castelli DM, Hillman CH, Kramer AF. Physical activity increases white matter microstructure in children. Frontiers in neuroscience. 2018;12:950.

Davis CL, Tomporowski PD, McDowell JE, Austin BP, Miller PH, Yanasak NE, Allison JD, Naglieri JA. Exercise improves executive function and achievement and alters brain activation in overweight children: a randomized, controlled trial. Health psychology. 2011 Jan;30(1):91.

Drollette ES, Pontifex MB, Raine LB, Scudder MR, Moore RD, Kao SC, Westfall DR, Wu CT, Kamijo K, Castelli DM, Khan NA. Effects of the FITKids physical activity randomized controlled trial on conflict monitoring in youth. Psychophysiology. 2018 Mar;55(3):e13017.

Hillman CH, Pontifex MB, Castelli DM, Khan NA, Raine LB, Scudder MR, Drollette ES, Moore RD, Wu CT, Kamijo K. Effects of the FITKids randomized controlled trial on executive control and brain function. Pediatrics. 2014;134(4):e1063-71.

Ludyga S, Koutsandréou F, Reuter EM, Voelcker-Rehage C, Budde H. A randomized controlled trial on the effects of aerobic and coordinative training on neural correlates of inhibitory control in children. Journal of clinical medicine. 2019;8(2):184.

Chu CH, Kramer AF, Song TF, Wu CH, Hung TM, Chang YK. Acute exercise and neurocognitive development in preadolescents and young adults: an ERP study. Neural plasticity. 2017 Oct;2017.

Chuang LY, Tsai YJ, Chang YK, Huang CJ, Hung TM. Effects of acute aerobic exercise on response preparation in a Go/No Go Task in children with ADHD: an ERP study. Journal of sport and Health science. 2015 Mar 1;4(1):82-8.

Huang CJ, Huang CW, Hung CL, Tsai YJ, Chang YK, Wu CT, Hung TM. Effects of acute exercise on resting EEG in children with Attention-Deficit/Hyperactivity Disorder. Child Psychiatry & Human Development. 2018 Dec;49(6):993-1002.

Krafft CE, Pierce JE, Schwarz NF, Chi L, Weinberger AL, Schaeffer DJ, Rodrigue AL, Camchong J, Allison JD, Yanasak NE, Liu T. An eight month randomized controlled exercise intervention alters resting state synchrony in overweight children. Neuroscience. 2014 Jan 3;256:445-55.

Krafft CE, Schaeffer DJ, Schwarz NF, Chi L, Weinberger AL, Pierce JE, Rodrigue AL, Allison JD, Yanasak NE, Liu T, Davis CL. Improved frontoparietal white matter integrity in overweight children is associated with attendance at an after-school exercise program. Developmental Neuroscience. 2014;36(1):1-9.

Krafft CE, Schwarz NF, Chi L, Weinberger AL, Schaeffer DJ, Pierce JE, Rodrigue AL, Yanasak NE, Miller PH, Tomporowski PD, Davis CL. An 8?month randomized controlled exercise trial alters brain activation during cognitive tasks in overweight children. Obesity. 2014 Jan;22(1):232-42.

Hung CL, Huang CJ, Tsai YJ, Chang YK, Hung TM. Neuroelectric and behavioral effects of acute exercise on task switching in children with attention-deficit/hyperactivity disorder. Frontiers in psychology. 2016 Oct 13;7:1589.

Pontifex MB, Gwizdala KL, Weng TB, Zhu DC, Voss MW. Cerebral blood flow is not modulated following acute aerobic exercise in preadolescent children. International Journal of Psychophysiology. 2018 Dec 1;134:44-51.

Chen ZH, Wu YF, Wang PL, Wu YP, Li ZY, Zhao Y, Zhou JS, Zhu C, Cao C, Mao YY, Xu F. Autophagy is essential for ultrafine particle-induced inflammation and mucus hyperproduction in airway epithelium. Autophagy. 2016 Feb 1;12(2):297-311.

Hillman CH, Buck SM, Themanson JR, Pontifex MB, Castelli DM. Aerobic fitness and cognitive development: Event-related brain potential and task performance indices of executive control in preadolescent children. Developmental psychology. 2009 Jan;45(1):114.

Lind RR, Beck MM, Wikman J, Malarski K, Krustrup P, Lundbye?Jensen J, Geertsen SS. Acute high?intensity football games can improve children's inhibitory control and neurophysiological measures of attention. Scandinavian journal of medicine & science in sports. 2019 Oct;29(10):1546-62.

Xiong X, Zhu LN, Dong XX, Wang W, Yan J, Chen AG. Aerobic exercise intervention alters executive function and white matter integrity in deaf children: a randomized controlled study. Neural plasticity. 2018 Apr 30;2018.

Kim HB, So WY. Effect of sixteen weeks of combined exercise on body composition, physical fitness and cognitive function in Korean children. South African Journal for Research in Sport, Physical Education and Recreation. 2015 Jan 1;37(1):47-57.

Chaddock-Heyman L, Erickson KI, Voss M, Knecht A, Pontifex MB, Castelli D, Hillman C, Kramer A. The effects of physical activity on functional MRI activation associated with cognitive control in children: a randomized controlled intervention. Frontiers in human neuroscience. 2013 Mar 12;7:72.

Kamijo K, Pontifex MB, O’Leary KC, Scudder MR, Wu CT, Castelli DM, Hillman CH. The effects of an afterschool physical activity program on working memory in preadolescent children. Developmental science. 2011 Sep;14(5):1046-58.

Lee SK, Song J, Park JH. Effects of combination exercises on electroencephalography and frontal lobe executive function measures in children with ADHD: A pilot study.

St-Louis-Deschênes M, Moore R, Ellemberg D. The selective effect of acute aerobic exercise on neuroelectric indices of attention during development. Pediat Therapeut. 2015;5(238):2161-0665.

Wollseiffen P, Klein T, Vogt T, Abeln V, Strüder HK, Stuckenschneider T, Sanders M, Claassen JA, Askew CD, Carnahan H, Schneider S. Neurocognitive performance is enhanced during short periods of microgravity—part 2. Physiology & behavior. 2019 Aug 1;207:48-54.

Publicado

2022-12-29

Cómo citar

Jimenez Vaquerizo, E. (2022). Los efectos neurofisiológicos de la actividad física en los niños: revisión sistemática. Revista Iberoamericana De Ciencias De La Actividad Física Y El Deporte, 11(3), 170–188. https://doi.org/10.24310/riccafd.2022.v11i2.14533

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