Hareket ve Sporun Beyin Gelişimi Üzerindeki Etkileri
Özet
Referanslar
Akdağ, F. (2015). Çocukta beyin gelişimi ve erken müdahale. Hacettepe University Faculty of Health Sciences Journal, Uluslararası Katılımlı 3. Çocuk Gelişimi ve Eğitimi Kongre Kitabı.
Allen, J., Sun, Y., & Woods, J. A. (2015). Exercise and the regulation of inflammatory responses. Progress in molecular biology and translational science, 135, 337-354.
Alves, H., Chaddock, L., ... & Kramer, A. F. (2013). The influence of aerobic fitness on cerebral white matter integrity and cognitive function in older adults: results of a one-year exercise intervention. Human brain mapping, 34(11), 2972-2985.
American Council on Exercise, (2013). Human movement systems: nervous system
Babiloni C, Del Percio C, Iacoboni M, Infarinato F, Lizio R, Marzano N, Crespi G, Dassù F, Pirritano M, Gallamini M, Eusebi F. (2008). Golf putt outcomes are predicted by sensorimotor cerebral EEG rhythms. J Physiol. 586(1):131-9. doi: 10.1113/jphysiol.2007.141630. Epub 2007 Oct 18. PMID: 17947315; PMCID: PMC2375559.
Anderson E & Shivakumar G (2013). Effects of exercise and physical activity on anxiety. Front. Psychiatry 4:27. doi: 10.3389/fpsyt.2013.00027
Bezzola, L., Mérillat, S., Gaser, C. & Jäncke. L. (2011). Training-induced neural plasticity in golf. NovicesJournal of Neuroscience, 31 (35) 12444-12448; doı: 10.1523/JNEUROSCI.1996-11.2011
Broomfield, L. (2011). Fundamental movement skills provide the basis of physical literacy. https://us.humankinetics.com/blogs/excerpt/fundamental-movement-skills-provide-the-basis-of-physical-literacy
Burrell, T. (2017). New finding: different types of exercise affect different parts of your brain. Conscious Life News. https://consciouslifenews.com/new-finding-different-types-exercise-affect-different-parts-brain/11121031/#
Caspersen CJ, Powell KE, Christenson GM. (1985). Physical activity, exercise, and physical fitness: definitions and distinctions for health-related research. Public Health Rep. 100(2):126-31. PMID: 3920711; PMCID: PMC1424733.
Colcombe, S. J., & Kramer, A. F. (2003). Fitness effects on the cognitive function of older adults: a meta-analytic study. Psychological science, 14(2), 125-130.
Collins, H., Booth, J.N., Duncan, A. et al. (2019). The effect of resistance training interventions on fundamental movement skills in youth: a meta-analysis. Sports Med- Open 5, 17. https://doi.org/10.1186/s40798-019-0188-x
Cona G, Cavazzana A, Paoli A, Marcolin G, Grainer A. & Bisiacchi PS (2015). It’s a matter of mind! Cognitive functioning predicts the athletic performance in ultra-marathon runners. PLoS ONE 10(7): e0132943. https://doi.org/10.1371/journal.pone.0132943
Cools W, Martelaer KD, Samaey C. & Andries C. (2009). Movement skill assessment of typically developing preschool children: a review of seven movement skill assessment tools. J Sports Sci Med. 2009 Jun 1;8(2):154-68. PMID: 24149522; PMCID: PMC3761481.
Cotman, C. W., & Berchtold, N. C. (2002). Exercise: a behavioral intervention to enhance brain health and plasticity. Trends in neurosciences, 25(6), 295-301.
Chaddock-Heyman L, Erickson KI, Kienzler C, Drollette ES, Raine LB, Kao S-C, Bensken J, Weisshappel R, Castelli DM, Hillman CH and Kramer AF (2018). Physical activity increases white matter microstructure in children. Front. Neurosci. 12:950. doi: 10.3389/fnins.2018.00950
Chandy A, Tsay J and Ivry R (2022). How do we learn skilled movements? Front. Young minds. 10:676806. doi: 10.3389/frym.2022.676806
Dasso NA. (2019). How is exercise different from physical activity? A concept analysis. Nurs Forum. 54(1):45-52. doi: 10.1111/nuf.12296. Epub 2018 Oct 17. PMID: 30332516.
De Giorgio, A., Kuvačić, G., Milić, M., & Padulo, J. (2018). The brain and movement: How physical activity affects the brain. Montenegrin Journal of Sports Science and Medicine, 7(2), 63-68. doi: 10.26773/mjssm.180910
Di Liegro, Schiera, Proia, & Di Liegro. (2019). Physical activity and brain health. Genes, 10(9), 720. MDPI AG. Retrieved from http://dx.doi.org/10.3390/genes10090720
Erickson, K. I., Voss, M. W., Prakash, R. S., Basak, C., Szabo, A., Chaddock, L., & Kramer, A. F. (2011). Exercise training increases size of hippocampus and improves memory. Proceedings of the National Academy of Sciences, 108(7), 3017-3022.
Fondell, E., Axelsson, F., Franck, J., Ploner, A., & Lövdén, M. (2018). Physical exercise intervention for older adults with subjective memory impairment: a randomized controlled trial. Aging & mental health, 22(11), 1495-1506.
Fukuo, M., Kamagata, K., Kuramochi, M. et al. (2020). Regional brain gray matter volume in world-class artistic gymnasts. J Physiol Sci 70, 43. https://doi.org/10.1186/s12576-020-00767-w
Ghildiyal R. (2015). Role of sports in the development of an individual and role of psychology in sports. Mens Sana Monogr. 13:165-170.
Giacosa C, Karpati FJ, Foster NE, Penhune VB, Hyde KL. (2016). Dance and music training have different effects on white matter diffusivity in sensorimotor pathways. Neuroimage. 15; 135:273-86. doi: 10.1016/j.neuroimage. PMID: 27114054.
Glatt, R., MS, CPT, NBC-HWC (2021). The impact of exercise on the brain. Brain Health Trainer Course. American Council on Exercise. https://www.acefitness.org/continuing-education/certified/july-2021/7892/the-impact-of-exercise-on-the-brain/
Gomes da Silva S. & Arida RM. (2015). Physical activity and brain development. Expert Rev Neurother. 2015;15(9):1041-51. doi: 10.1586/14737175.2015.1077115. PMID: 26289488.
Hands, B. P. (2012). How fundamental are fundamental movement skills? Active and Healthy Magazine, 19 (1), 14-17.
Hänggi, J., Langer, N., Lutz, K., Birrer, K., Mérillat, S. & Jäncke L (2015). Structural brain correlates associated with professional handball playing. PLoS ONE 10(4): e0124222. https://doi.org/10.1371/journal.pone.0124222
Hardy LL, et al. (2009). Fundamental movement skills among Australian preschool children. J Sci Med Sport, doi: 10.1016/j.jsams.2009.05.010
Hillman, C. H., Erickson, K. I., & Kramer, A. F. (2008). Be smart, exercise your heart: exercise effects on brain and cognition. Nature Reviews Neuroscience, 9(1), 58-65. doi: 10.1038/nrn2298
Hötting K, Schickert N, Kaiser J, Röder B, Schmidt-Kassow M. (2016). The effects of acute physical exercise on memory, peripheral BDNF, and cortisol in young adults. Neural Plast. 2016; 2016:6860573.
Hsu, D. C., Mormino, E. C., Schultz, A. P., Amariglio, R. E., Donovan, N. J., Rentz, D. M., ... & Johnson, K. A. (2018). Lower late-life body-mass index is associated with higher cortical amyloid burden in clinically normal elderly. Journal of Alzheimer's Disease, 62(4), 1709-1720.
Huang, R., Lu, M., Song, Z. et al. (2015). Long-term intensive training induced brain structural changes in world class gymnasts. Brain Struct Funct 220, 625–644. https://doi.org/10.1007/s00429-013-0677-5
Jacini WF, Cannonieri GC, Fernandes PT, Bonilha L, Cendes F, Li LM. (2009). Can exercise shape your brain? Cortical differences associated with judo practice. J Sci Med Sport. 12(6):688-90. doi: 10.1016/j.jsams.2008.11.004. Epub 2009 Jan 14. PMID: 19147406.
Kang-chun et all. (2007). Published by the Physical Education Section Curriculum Development Institute Education and Manpower Bureau).
Kinder KT, DiMercurio A and Buss AT (2022). What can movements teach us about brain function? Front. Young minds 10:697543. doi: 10.3389/frym. 2022.697543
Kurtoğlu E, Payas A, Düz S, Arık M, Uçar İ, Tokmak TT, Erbay MF, Acer N, Unur E. (2023). Analysis of changes in brain morphological structure of taekwondo athletes by diffusion tensor imaging. J Chem Neuroanat. 129:102250. doi: 10.1016/j.jchemneu.2023.102250. Epub ahead of print. PMID: 36791923.
Lanza, I. R., Short, D. K., Short, K. R., Raghavakaimal, S., Basu, R., Joyner, M. J., & McConnell, J. P. (2008). Endurance exercise as a countermeasure for aging. Diabetes, 57(11), 2933-2942. doi: 10.2337/db08-0349.
Liu, Y., Liu, Y., Zhang, Y., Zhang, L., Du, X., Wei, W., ... & Zhang, Z. (2019). The relationship between inflammatory cytokines and the risk of Alzheimer's disease: a meta-analysis. International Journal of Neuroscience, 129(7), 693-701.
Luan, H., Kan, Z., Xu, Y., Lv, C., & Jiang, W. (2020). Exercise as a prescription for the aging brain: insights from molecular, cellular and behavioral studies. Journal of Sport and Health Science, 9(5), 413-428. doi: 10.1016/j.jshs.2020.02.008
Maddock RJ, Casazza GA, Buonocore MH, Tanase C. (2011). Vigorous exercise increases brain lactate and Glx (glutamate+glutamine): a dynamic 1H-MRS study. Neuroimage. 57(4):1324-30. doi: 10.1016/j.neuroimage.2011.05.048. Epub 2011 May 27. PMID: 21640838.
Mattson, M. P., & Arumugam, T. V. (2018). Hallmarks of brain aging: Adaptive and pathological modification by metabolic states. Cell metabolism, 27(6), 1176-1199. doi: 10.1016/j.cmet.2018.05.011
Nakata, H., Yoshie, M., Miura, A. & Kudo, K. (2010). Characteristics of the athletes' brain: Evidence from neurophysiology and neuroimaging. Brain Research Reviews. Volume 62, Issue 2, March 2010, Pages 197-211 https://doi.org/10.1016/j.brainresrev.2009.11.006
Ogawa, T. & Kanosue, K. (2015). Training locomotor function: from a perspective of the underlying neural mechanisms. In: Kanosue, K., Nagami, T., Tsuchiya, J. (eds) Sports Performance. Springer, Tokyo. https://doi.org/10.1007/978-4-431-55315-1_5
O'Hagan AD, Behan S, Peers C, Belton S, O'Connor N, Issartel J. (2022). Do our movement skills impact our cognitive skills? Exploring the relationship between cognitive function and fundamental movement skills in primary school children. J Sci Med Sport. 25(11):871-877. doi: 10.1016/j.jsams.2022.08.001. Epub 2022 Aug 4. PMID: 36064502.
Ortega, E. (2016). The “bioregulatory effect of exercise” on the innate/inflammatory responses. Journal of physiology and biochemistry, 72, 361-369.
Palucci Vieira, L.H., Carling, C., da Silva, J.P. et al. (2022). Modelling the relationships between EEG signals, movement kinematics and outcome in soccer kicking. Cogn Neurodyn 16, 1303–1321. https://doi.org/10.1007/s11571-022-09786-2
Pedersen, B. K., & Febbraio, M. A. (2012). Muscles, exercise and obesity: skeletal muscle as a secretory organ. Nature Reviews Endocrinology, 8(8), 457-465.
Rad, A. (2021). Types of movements in the human body. https://www.kenhub.com/en/library/anatomy/types-of-movements-in-the-human-body
Ruscheweyh R, Willemer C, Krüger K, et al. (2011). Physical activity and memory functions: an interventional study. Neurobiol Aging. 32(7):1304-1319.
Sancassiani F, Machado S, Preti A. (2018). Physical Activity, Exercise and Sport Programs as Effective Therapeutic Tools in Psychosocial Rehabilitation. Clin Pract Epidemiol Ment Health. 14:6-10. doi: 10.2174/1745017901814010006. PMID: 29515643; PMCID: PMC5827297.
Schaeffer DJ, Krafft CE, Schwarz NF, Chi L, Rodrigue AL, Pierce JE, Allison JD, Yanasak NE, Liu T, Davis CL, McDowell JE. (2014). An 8-month exercise intervention alters frontotemporal white matter integrity in overweight children. Psychophysiology. 51(8):728-33. doi: 10.1111/psyp.12227. Epub 2014 May 5. PMID: 24797659; PMCID: PMC4107135.
Schlaffke, L. Lissek, S. Lenz, M. Brüne, M. Juckel, G. Hinrichs, T. Platen, P. Tegenthoff, M & Schmidt-Wilcke, T. (2014). Sports and brain morphology – A voxel-based morphometry study with endurance athletes and martial artists. Neuroscience. Volume 259, 14 February 2014, Pages 35-42 https://doi.org/10.1016/j.neuroscience.2013.11.046
Simpson, R. J., Kunz, H., Agha, N., Graff, R., & Kavanagh, K. (2015). Exercise and the regulation of immune functions. Progress in Molecular Biology and Translational Science, 135, 355-380. doi: 10.1016/bs.pmbts.2015.07.007
Sofi, F., Valecchi, D., Bacci, D., Abbate, R., Gensini, G. F., Casini, A., & Macchi, C. (2011). Physical activity and risk of cognitive decline: a meta-analysis of prospective studies. Journal of Internal Medicine, 269(1), 107-117. doi: 10.1111/j.1365-2796.2010.02281.x
Starosta, W. (2001). Science of Human Movements – Meaning, Name, Directions of Development. Journal of Human Kinetics Volume 6. Starosta, W. (2001). Science of Human Movements – Meaning, Name, Directions of Development. Journal of Human Kinetics Volume 6.
Suzuki T, Shimada H, Makizako H, et al. (2012). Effects of multicomponent exercise on cognitive function in older adults with amnestic mild cognitive impairment: a randomized controlled trial. BMC Neurol. 12:128.
Tharawadeepimuk, K., Wongsawat, Y. (2021). Quantitative EEG in sports: performance level estimation of professional female soccer players. Health Inf Sci Syst 9, 14. https://doi.org/10.1007/s13755-021-00144-w
Tiedemann, C. (2021). "Sport”- a suggested definition. http://sport-geschichte.de/tiedemann/documents/sportdefinitionEnglish.html
Toh, Z.H., Gu, Q.L., Seah, T.A.C., Wong, W.H., McNab, J.A., Chuang, K., Hong, X., Tang, P.H. (2018). Increased white matter connectivity seen in young judo athletes with MRI. Clinical Radiology. Volume 73, Issue 10, October 2018, Pages 911.e17-911.e21 https://doi.org/10.1016/j.crad.2018.06.003
U.S. Department of Health and Human Services. Physical Activity Guidelines for Americans, 2nd edition. Washington, DC: U.S. Department of Health and Human Services; 2018.
Vickers, J. N. & Williams, A. M. (2017). The Role of Mental Processes in Elite Sports Performance. Oxford Research Encyclopedia of Psychology Oxford University Press 2023. https://doi.org/10.1093/acrefore/9780190236557.013.161
Voss, M. W., Prakash, R. S., Erickson, K. I., Basak, C., Chaddock, L., Kim, J. S., ... & Kramer, A. F. (2010). Plasticity of brain networks in a randomized intervention trial of exercise training in older adults. Frontiers in Aging Neuroscience, 2, 32.
Western Sydney Local Health District (WSLHD) (2023). Fundamental movement skills. https://www.wslhd.health.nsw.gov.au/Healthy-Children/Our-Programs/Munch-Move/Fundamental-Movement-Skills.
WHO (2022). Physical activity. https://www.who.int/news-room/fact-sheets/detail/physical-activity
Wrann, C. D., & Rauh, S. P. (2016). The effects of exercise-induced hormones on mitochondrial signaling and metabolism. Applied Physiology, Nutrition, and Metabolism, 41(11), 1117-1123. doi: 10.1139/apnm-2016-0303
Yeom, H.G., Kim, J.S. & Chung, C.K. (2020). Brain mechanisms in motor control during reaching movements: Transition of functional connectivity according to movement states. Sci Rep 10, 567. https://doi.org/10.1038/s41598-020-57489-7
Zhang, J., Liu, Q., Chen, Q., Liu, J., & Yang, M. (2019). Mitochondrial biogenesis and neural differentiation of human iPSCs are improved by physiological oxygen tension through a reduction in reactive oxygen species. Stem Cell Research & Therapy, 10(1), 1-13. doi: 10.1186/s13287-019-1173-3
Referanslar
Akdağ, F. (2015). Çocukta beyin gelişimi ve erken müdahale. Hacettepe University Faculty of Health Sciences Journal, Uluslararası Katılımlı 3. Çocuk Gelişimi ve Eğitimi Kongre Kitabı.
Allen, J., Sun, Y., & Woods, J. A. (2015). Exercise and the regulation of inflammatory responses. Progress in molecular biology and translational science, 135, 337-354.
Alves, H., Chaddock, L., ... & Kramer, A. F. (2013). The influence of aerobic fitness on cerebral white matter integrity and cognitive function in older adults: results of a one-year exercise intervention. Human brain mapping, 34(11), 2972-2985.
American Council on Exercise, (2013). Human movement systems: nervous system
Babiloni C, Del Percio C, Iacoboni M, Infarinato F, Lizio R, Marzano N, Crespi G, Dassù F, Pirritano M, Gallamini M, Eusebi F. (2008). Golf putt outcomes are predicted by sensorimotor cerebral EEG rhythms. J Physiol. 586(1):131-9. doi: 10.1113/jphysiol.2007.141630. Epub 2007 Oct 18. PMID: 17947315; PMCID: PMC2375559.
Anderson E & Shivakumar G (2013). Effects of exercise and physical activity on anxiety. Front. Psychiatry 4:27. doi: 10.3389/fpsyt.2013.00027
Bezzola, L., Mérillat, S., Gaser, C. & Jäncke. L. (2011). Training-induced neural plasticity in golf. NovicesJournal of Neuroscience, 31 (35) 12444-12448; doı: 10.1523/JNEUROSCI.1996-11.2011
Broomfield, L. (2011). Fundamental movement skills provide the basis of physical literacy. https://us.humankinetics.com/blogs/excerpt/fundamental-movement-skills-provide-the-basis-of-physical-literacy
Burrell, T. (2017). New finding: different types of exercise affect different parts of your brain. Conscious Life News. https://consciouslifenews.com/new-finding-different-types-exercise-affect-different-parts-brain/11121031/#
Caspersen CJ, Powell KE, Christenson GM. (1985). Physical activity, exercise, and physical fitness: definitions and distinctions for health-related research. Public Health Rep. 100(2):126-31. PMID: 3920711; PMCID: PMC1424733.
Colcombe, S. J., & Kramer, A. F. (2003). Fitness effects on the cognitive function of older adults: a meta-analytic study. Psychological science, 14(2), 125-130.
Collins, H., Booth, J.N., Duncan, A. et al. (2019). The effect of resistance training interventions on fundamental movement skills in youth: a meta-analysis. Sports Med- Open 5, 17. https://doi.org/10.1186/s40798-019-0188-x
Cona G, Cavazzana A, Paoli A, Marcolin G, Grainer A. & Bisiacchi PS (2015). It’s a matter of mind! Cognitive functioning predicts the athletic performance in ultra-marathon runners. PLoS ONE 10(7): e0132943. https://doi.org/10.1371/journal.pone.0132943
Cools W, Martelaer KD, Samaey C. & Andries C. (2009). Movement skill assessment of typically developing preschool children: a review of seven movement skill assessment tools. J Sports Sci Med. 2009 Jun 1;8(2):154-68. PMID: 24149522; PMCID: PMC3761481.
Cotman, C. W., & Berchtold, N. C. (2002). Exercise: a behavioral intervention to enhance brain health and plasticity. Trends in neurosciences, 25(6), 295-301.
Chaddock-Heyman L, Erickson KI, Kienzler C, Drollette ES, Raine LB, Kao S-C, Bensken J, Weisshappel R, Castelli DM, Hillman CH and Kramer AF (2018). Physical activity increases white matter microstructure in children. Front. Neurosci. 12:950. doi: 10.3389/fnins.2018.00950
Chandy A, Tsay J and Ivry R (2022). How do we learn skilled movements? Front. Young minds. 10:676806. doi: 10.3389/frym.2022.676806
Dasso NA. (2019). How is exercise different from physical activity? A concept analysis. Nurs Forum. 54(1):45-52. doi: 10.1111/nuf.12296. Epub 2018 Oct 17. PMID: 30332516.
De Giorgio, A., Kuvačić, G., Milić, M., & Padulo, J. (2018). The brain and movement: How physical activity affects the brain. Montenegrin Journal of Sports Science and Medicine, 7(2), 63-68. doi: 10.26773/mjssm.180910
Di Liegro, Schiera, Proia, & Di Liegro. (2019). Physical activity and brain health. Genes, 10(9), 720. MDPI AG. Retrieved from http://dx.doi.org/10.3390/genes10090720
Erickson, K. I., Voss, M. W., Prakash, R. S., Basak, C., Szabo, A., Chaddock, L., & Kramer, A. F. (2011). Exercise training increases size of hippocampus and improves memory. Proceedings of the National Academy of Sciences, 108(7), 3017-3022.
Fondell, E., Axelsson, F., Franck, J., Ploner, A., & Lövdén, M. (2018). Physical exercise intervention for older adults with subjective memory impairment: a randomized controlled trial. Aging & mental health, 22(11), 1495-1506.
Fukuo, M., Kamagata, K., Kuramochi, M. et al. (2020). Regional brain gray matter volume in world-class artistic gymnasts. J Physiol Sci 70, 43. https://doi.org/10.1186/s12576-020-00767-w
Ghildiyal R. (2015). Role of sports in the development of an individual and role of psychology in sports. Mens Sana Monogr. 13:165-170.
Giacosa C, Karpati FJ, Foster NE, Penhune VB, Hyde KL. (2016). Dance and music training have different effects on white matter diffusivity in sensorimotor pathways. Neuroimage. 15; 135:273-86. doi: 10.1016/j.neuroimage. PMID: 27114054.
Glatt, R., MS, CPT, NBC-HWC (2021). The impact of exercise on the brain. Brain Health Trainer Course. American Council on Exercise. https://www.acefitness.org/continuing-education/certified/july-2021/7892/the-impact-of-exercise-on-the-brain/
Gomes da Silva S. & Arida RM. (2015). Physical activity and brain development. Expert Rev Neurother. 2015;15(9):1041-51. doi: 10.1586/14737175.2015.1077115. PMID: 26289488.
Hands, B. P. (2012). How fundamental are fundamental movement skills? Active and Healthy Magazine, 19 (1), 14-17.
Hänggi, J., Langer, N., Lutz, K., Birrer, K., Mérillat, S. & Jäncke L (2015). Structural brain correlates associated with professional handball playing. PLoS ONE 10(4): e0124222. https://doi.org/10.1371/journal.pone.0124222
Hardy LL, et al. (2009). Fundamental movement skills among Australian preschool children. J Sci Med Sport, doi: 10.1016/j.jsams.2009.05.010
Hillman, C. H., Erickson, K. I., & Kramer, A. F. (2008). Be smart, exercise your heart: exercise effects on brain and cognition. Nature Reviews Neuroscience, 9(1), 58-65. doi: 10.1038/nrn2298
Hötting K, Schickert N, Kaiser J, Röder B, Schmidt-Kassow M. (2016). The effects of acute physical exercise on memory, peripheral BDNF, and cortisol in young adults. Neural Plast. 2016; 2016:6860573.
Hsu, D. C., Mormino, E. C., Schultz, A. P., Amariglio, R. E., Donovan, N. J., Rentz, D. M., ... & Johnson, K. A. (2018). Lower late-life body-mass index is associated with higher cortical amyloid burden in clinically normal elderly. Journal of Alzheimer's Disease, 62(4), 1709-1720.
Huang, R., Lu, M., Song, Z. et al. (2015). Long-term intensive training induced brain structural changes in world class gymnasts. Brain Struct Funct 220, 625–644. https://doi.org/10.1007/s00429-013-0677-5
Jacini WF, Cannonieri GC, Fernandes PT, Bonilha L, Cendes F, Li LM. (2009). Can exercise shape your brain? Cortical differences associated with judo practice. J Sci Med Sport. 12(6):688-90. doi: 10.1016/j.jsams.2008.11.004. Epub 2009 Jan 14. PMID: 19147406.
Kang-chun et all. (2007). Published by the Physical Education Section Curriculum Development Institute Education and Manpower Bureau).
Kinder KT, DiMercurio A and Buss AT (2022). What can movements teach us about brain function? Front. Young minds 10:697543. doi: 10.3389/frym. 2022.697543
Kurtoğlu E, Payas A, Düz S, Arık M, Uçar İ, Tokmak TT, Erbay MF, Acer N, Unur E. (2023). Analysis of changes in brain morphological structure of taekwondo athletes by diffusion tensor imaging. J Chem Neuroanat. 129:102250. doi: 10.1016/j.jchemneu.2023.102250. Epub ahead of print. PMID: 36791923.
Lanza, I. R., Short, D. K., Short, K. R., Raghavakaimal, S., Basu, R., Joyner, M. J., & McConnell, J. P. (2008). Endurance exercise as a countermeasure for aging. Diabetes, 57(11), 2933-2942. doi: 10.2337/db08-0349.
Liu, Y., Liu, Y., Zhang, Y., Zhang, L., Du, X., Wei, W., ... & Zhang, Z. (2019). The relationship between inflammatory cytokines and the risk of Alzheimer's disease: a meta-analysis. International Journal of Neuroscience, 129(7), 693-701.
Luan, H., Kan, Z., Xu, Y., Lv, C., & Jiang, W. (2020). Exercise as a prescription for the aging brain: insights from molecular, cellular and behavioral studies. Journal of Sport and Health Science, 9(5), 413-428. doi: 10.1016/j.jshs.2020.02.008
Maddock RJ, Casazza GA, Buonocore MH, Tanase C. (2011). Vigorous exercise increases brain lactate and Glx (glutamate+glutamine): a dynamic 1H-MRS study. Neuroimage. 57(4):1324-30. doi: 10.1016/j.neuroimage.2011.05.048. Epub 2011 May 27. PMID: 21640838.
Mattson, M. P., & Arumugam, T. V. (2018). Hallmarks of brain aging: Adaptive and pathological modification by metabolic states. Cell metabolism, 27(6), 1176-1199. doi: 10.1016/j.cmet.2018.05.011
Nakata, H., Yoshie, M., Miura, A. & Kudo, K. (2010). Characteristics of the athletes' brain: Evidence from neurophysiology and neuroimaging. Brain Research Reviews. Volume 62, Issue 2, March 2010, Pages 197-211 https://doi.org/10.1016/j.brainresrev.2009.11.006
Ogawa, T. & Kanosue, K. (2015). Training locomotor function: from a perspective of the underlying neural mechanisms. In: Kanosue, K., Nagami, T., Tsuchiya, J. (eds) Sports Performance. Springer, Tokyo. https://doi.org/10.1007/978-4-431-55315-1_5
O'Hagan AD, Behan S, Peers C, Belton S, O'Connor N, Issartel J. (2022). Do our movement skills impact our cognitive skills? Exploring the relationship between cognitive function and fundamental movement skills in primary school children. J Sci Med Sport. 25(11):871-877. doi: 10.1016/j.jsams.2022.08.001. Epub 2022 Aug 4. PMID: 36064502.
Ortega, E. (2016). The “bioregulatory effect of exercise” on the innate/inflammatory responses. Journal of physiology and biochemistry, 72, 361-369.
Palucci Vieira, L.H., Carling, C., da Silva, J.P. et al. (2022). Modelling the relationships between EEG signals, movement kinematics and outcome in soccer kicking. Cogn Neurodyn 16, 1303–1321. https://doi.org/10.1007/s11571-022-09786-2
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