跳至主要内容

Effects of Aquatic Motor Activities on Early Childhood Cognitive and Motor Development

Read full paper at:
http://www.scirp.org/journal/PaperInformation.aspx?PaperID=52302#.VI-k0MnQrzE

While the mental and physical benefits of motor activity are well documented, the degree to which these benefits are dependent upon the environment within which the activity takes place remains unknown. Specifically, studies exploring the effects of aquatic motor activities on cognitive abilities are rare. The current study investigated the effects of aquatic motor activities—as compared to on-land motor activities and non-motor activities—on the development of motor and cognitive abilities in a sample of 94 children aged between four and six. Developmental-functionality tests—including fine and gross motor, time estimation, reasoning and processing speed tests—were used to measure the motor and cognitive abilities of participants before and after six months of intervention. Participation in the aquatic motor activities group was found to improve gross motor, time-estimation and reasoning abilities. Moreover, improvements in gross motor abilities mediated the association between participation in aquatic motor activities group and the children’s processing speed ability. These findings can improve the understanding of child development professionals, psychologists and educators regarding the connection between aquatic environment and cognitive and motor development, and may contribute to improved early childhood interventions.
Cite this paper
Nissim, M. , Ram-Tsur, R. , Zion, M. , Mevarech, Z. and Ben-Soussan, T. (2014) Effects of Aquatic Motor Activities on Early Childhood Cognitive and Motor Development. Open Journal of Social Sciences, 2, 24-39. doi: 10.4236/jss.2014.212005
 

[1] Ben-Soussan, T.D., Glicksohn, J., Goldstein, A., Berkovich-Ohana, A. and Donchin, O. (2013) Into the Square and Out of the Box: The Effects of Quadrato-Motor Training on Creativity and Alpha Coherence. PloS ONE, 8, e55023. http://dx.doi.org/10.1371/journal.pone.0055023
[2] Warburton, D.E., Nicol, C.W. and Bredin, S.S. (2006) Health Benefits of Physical Activity: The Evidence. Canadian Medical Association Journal, 174, 801-809. http://dx.doi.org/10.1503/cmaj.051351
[3] Wassenberg, R., Feron, F., Kessels, A., Hendriksen, J., Kalff, A., Kroes, M., Hurks, P.P., Beeren, M., Jolles, J. and Vles, J. (2005) Relation between Cognitive and Motor Performance in 5- to 6-Year-Old Children: Results from a Large-Scale Cross-Sectional Study. Child Development, 76, 1092-1103. http://dx.doi.org/10.1111/j.1467-8624.2005.00899.x
[4] Diamond, A. (2005) Attention Deficit Disorder (Attention-Deficit/Hyperactivity Disorder without Hyperactivity): A Neurobiologically and Behaviorally Distinct Disorder from Attention-Deficit/Hyperactivity Disorder (with Hyperactivity). Development and Psychopathology, 17, 807-825. http://dx.doi.org/10.1017/S0954579405050388
[5] Diamond, A. (2000) Close Interrelation of Motor Development and Cognitive Development and of the Cerebellum and Prefrontal Cortex. Child Development, 71, 44-56. http://dx.doi.org/10.1111/1467-8624.00117
[6] Sibley, B.A. and Etnier, J.L. (2003) The Relationship between Physical Activity and Cognition in Children: A Meta-Analysis. Pediatric Exercise Science, 15, 243-256.
[7] Hillman, C.H., Erickson, K.I. and Kramer, A.F. (2008) Be Smart, Exercise Your Heart: Exercise Effects on Brain and Cognition. Nature Reviews Neuroscience, 9, 58-65. http://dx.doi.org/10.1038/nrn2298
[8] Smith, L.B. and Thelen, E. (2003) Development as a Dynamic System. Trends in Cognitive Sciences, 7, 343-348. http://dx.doi.org/10.1016/S1364-6613(03)00156-6
[9] Becker, B.E. (2009) Aquatic Therapy: Scientific Foundations and Clinical Rehabilitation Applications. American Academy of Physical Medicine and Rehabilitation, 1, 859-872. http://dx.doi.org/10.1016/j.pmrj.2009.05.017
[10] Devereux, K., Robertson, D. and Briffa, N.K. (2005) Effects of a Water-Based Program on Women 65 Years and over: A Randomized Controlled Trial. Australian Journal of Physiotherapy, 51, 102-108. http://dx.doi.org/10.1016/S0004-9514(05)70038-6
[11] Roth, A.E., Miller, M.G., Ricard, M., Ritenour, D. and Chapman, B.L. (2006) Comparisons of Static and Dynamic Balance Following Training in Aquatic and Land Environments. Journal of Sport Rehabilitation, 15, 299-311.
[12] Lakoff, G. and Johnson, M. (1999) Philosophy in the Flesh: The Embodied Mind and Its Challenges to Western thought. Basic Books, New York.
[13] Sato, D., Yamashiro, K., Onishi, H., Shimoyama, Y., Yoshida, T. and Maruyama, A. (2012) The Effect of Water Immersion on Short-Latency Somatosensory Evoked Potentials in Human. BMC Neuroscience, 13, 13-19. http://dx.doi.org/10.1186/1471-2202-13-13
[14] Pascual-Leone, A., Amedi, A., Fregni, F. and Merabet, L.B. (2005) The Plastic Human Brain Cortex. Annual Review of Neuroscience, 28, 377-401. http://dx.doi.org/10.1146/annurev.neuro.27.070203.144216
[15] Hannaford, C. (2005) Smart Moves: Why Learning Is Not All in Your Head. 2nd Edition, Great Ocean Books, Arlington.
[16] Stoodley, C.J. and Schmahmann, J.D. (2009) Functional Topography in the Human Cerebellum: A Meta-Analysis of Neuroimaging Studies. NeuroImage, 44, 489-501. http://dx.doi.org/10.1016/j.neuroimage.2008.08.039
[17] Dow, R. and Moruzzi, G. (1958) The Physiology and Pathology of the Cerebellum. University of Minnesota Press, Minneapolis.
[18] Holmes, G. (1939) The Cerebellum of Man. Brain, 62, 1-30. http://dx.doi.org/10.1093/brain/62.1.1
[19] Bastian, A.J. (2006) Learning to Predict the Future: The Cerebellum Adapts Feedforward Movement Control. Current Opinion in Neurobiology, 16, 645-649. http://dx.doi.org/10.1016/j.conb.2006.08.016
[20] Wolpert, D.M., Miall, R.C. and Kawato, M. (1998) Internal Models in the Cerebellum. Trends in Cognitive Sciences, 2, 313-321. http://dx.doi.org/10.1016/S1364-6613(98)01221-2
[21] Stoodley, C.J. and Stein, J.F. (2013) Cerebellar Function in Developmental Dyslexia. The Cerebellum, 12, 267-276. http://dx.doi.org/10.1007/s12311-012-0407-1
[22] Durisko, C. and Fiez, J. (2010) Functional Activation in the Cerebellum during Working Memory and Simple Speech Tasks. Cortex, 46, 896-906. http://dx.doi.org/10.1016/j.cortex.2009.09.009
[23] Fuster, J.M., Bodner, M. and Kroger, J.K. (2000) Cross-Modal and Cross-Temporal Association in Neurons of Frontal Cortex. Nature, 405, 347-351. http://dx.doi.org/10.1038/35012613
[24] Marvel, C.L., Faulkner, M.L., Strain, E.C., Mintzer, M.Z. and Desmond, J.E. (2012) An fMRI Investigation of Cerebellar Function during Verbal Working Memory in Methadone Maintenance Patients. Cerebellum, 11, 300-310. http://dx.doi.org/10.1007/s12311-011-0311-0
[25] Narayanan, N.S. and Laubach, M. (2006) Top-Down Control of Motor Cortex Ensembles by Dorsomedial Prefrontal Cortex. Neuron, 52, 921-931. http://dx.doi.org/10.1016/j.neuron.2006.10.021
[26] Harrington, D.L. and Haaland, K.Y. (1999) Neural Underpinnings of Temporal Processing: A Review of Focal Lesion, Pharmacological, and Functional Imaging Research. Review of Neuroscience, 10, 91-116. http://dx.doi.org/10.1515/REVNEURO.1999.10.2.91
[27] Ivry, R.B. and Keele, S.W. (1989) Timing Functions of the Cerebellum. Journal of Cognitive Neuroscience, 1, 136-152. http://dx.doi.org/10.1162/jocn.1989.1.2.136
[28] Ivry, R.B. and Diener, H.C. (1991) Impaired Velocity Perception in Patients with Lesions of Cerebellum. Journal of Cognitive Neuroscience, 3, 355-366. http://dx.doi.org/10.1162/jocn.1991.3.4.355
[29] Hazeltine, E., Helmut, L.L. and Ivry, R.B. (1998) Neural Mechanisms of Timing. Trends in Cognitive Science, 1, 163- 169. http://dx.doi.org/10.1016/S1364-6613(97)01058-9
[30] Ivry, R.B. (1997) Cerebellar Timing Systems. International Review of Neurobiology, 41, 555-573. http://dx.doi.org/10.1016/S0074-7742(08)60370-0
[31] McCrory, C. and Cooper, C. (2005) The Relationship between Three Auditory Inspection Time Tasks and General Intelligence. Personality and Individual Differences, 38, 1835-1845. http://dx.doi.org/10.1016/j.paid.2004.11.012
[32] Laycock, S.K., Wilkinson, I.D., Wallis, L.I., Darwent, G., Wonders, S.H., Fawcett, A.J. and Nicolson, R.I. (2008) Cerebellar Volume and Cerebellar Metabolic Characteristics in Adults with Dyslexia. Annals of the New York Academy of Sciences, 1145, 222-236. http://dx.doi.org/10.1196/annals.1416.002
[33] Nicolson, R.I., Fawcett, A.J. and Dean, P. (2001) Developmental Dyslexia: The Cerebellar Deficit Hypothesis. Trends in Neurosciences, 24, 515-516. http://dx.doi.org/10.1016/S0166-2236(00)01896-8
[34] Nicolson, R.I. and Fawcett, A.J. (1990) Automaticity: A New Framework for Dyslexia Research? Cognition, 35, 159- 182. http://dx.doi.org/10.1016/0010-0277(90)90013-A
[35] Nicolson, R.I., Fawcett, A.J. and Dean, P. (1995) Time Estimation Deficits in Developmental Dyslexia: Evidence of Cerebellar Involvement. Proceedings of the Royal Society B: Biological Sciences, 259, 43-47. http://dx.doi.org/10.1098/rspb.1995.0007
[36] Fernandez, V.G., Stuebing, K., Juranek, J. and Fletcher, J.M. (2013) Volumetric Analysis of Regional Variability in the Cerebellum of Children with Dyslexia. Cerebellum, 12, 906-915. http://dx.doi.org/10.1007/s12311-013-0504-9
[37] Berger, S.E. (2010) Locomotor Expertise Predicts Infants’ Perseverative Errors. Developmental Psychology, 46, 326- 336. http://dx.doi.org/10.1037/a0018285
[38] Brody, L.T. and Geigle, P.R. (2009) Aquatic Exercise for Rehabilitation and Training. Human Kinetics, Champaign.
[39] McMillan, J. (1978) The Role of Water in Rehabilitation. Fysioterapeuten, 45, 87-90.
[40] Ulrich, D.A. (1985) Test of Gross Motor Development. Pro-ED, Austin.
[41] Hutzler, Y. (1996) Assessment of Motor Abilities in School-Age Children: Theoretical Aspects. Part 1. Journal of Sports and Physical Education, 1, 15-18. (Hebrew)
[42] Hutzler, Y. (1996) Assessment of Motor Abilities in School-Age Children: Recommendations for Grades 1-4. Journal of Sports and Physical Education, 2, 22-25. (Hebrew)
[43] Denckla, M.B., Rudel, R.G., Chapman, C. and Krieger, J. (1985) Motor Proficiency in Dyslexic Children with and without Attentional Disorders. Archives of Neurology, 42, 228-231. http://dx.doi.org/10.1001/archneur.1985.04060030042008
[44] Raven, J.C. (1965) Guide to Using the Coloured Progressive Matrices Sets A, Ab, B. (Revised Order, 1956). H.K. Lewis, London.
[45] Woodcock, R.W. and Johnson, M.B. (1989) Woodcock-Johnson Psycho-Educational Battery-Revised. DLM. Allen, TX.
[46] Preacher, K.J. and Hayes, A.F. (2008) Asymptotic and Resampling Strategies for Assessing and Comparing Indirect Effects in Multiple Mediator Models. Behavior Research Methods, 40, 879-891. http://dx.doi.org/10.3758/BRM.40.3.879
[47] Baron, R. and Kenny, D.A. (1986) The Moderator-Mediator Variable Distinction in Social Psychological Research: Conceptual, Strategic, and Statistical Considerations. Journal of Personality and Social Psychology, 51, 1173-1182. http://dx.doi.org/10.1037/0022-3514.51.6.1173
[48] Preacher, K.J., Zyphur, M.J. and Zhang, Z. (2010) A General Multilevel SEM Framework for Assessing Multilevel Mediation. Psychological Methods, 15, 209-233. http://dx.doi.org/10.1037/a0020141
[49] Barnett, L.M., van Beurden, E., Morgan, P.J., Brooks, L.O. and Beard, J.R. (2009) Childhood Motor Skill Proficiency as a Predictor of Adolescent Physical Activity. The Journal of Adolescent Health, 44, 252-259. http://dx.doi.org/10.1016/j.jadohealth.2008.07.004
[50] Graf, C., Koch, B., Kretschmann-Kandel, E., Falkowski, G., Christ, H., Coburger, S., Lehmacher, W., Bjarnason-Wehrens, B., Platen, P., Tokarski, W., Predel, H.G. and Dordel, S. (2004) Correlation between BMI, Leisure Habits and Motor Abilities in Childhood (Child-Project). International Journal of Obesity, 28, 22-26. http://dx.doi.org/10.1038/sj.ijo.0802428
[51] Ram-Tsur, R., Nissim, M., Zion, M., Dotan Ben-Soussan, T. and Mevarech, Z.A. (2013) Language Development: The Effect of Aquatic and On-Land Motor Interventions. Creative Education, 4, 41-50. http://dx.doi.org/10.4236/ce.2013.49B009
[52] Pennington, B.F. (1999) Toward an Integrated Understanding of Dyslexia: Genetic, Neurological, and Cognitive Mechanisms. Development and Psychopathology, 11, 629-654. http://dx.doi.org/10.1017/S0954579499002242
[53] Bundy, A.C. and Murray, A.E. (2002) Sensory Integration: A. Jean Ayres’ Theory Revisited. In: Bundy, A.C., Lane, S.J. and Murray, E.A., Eds., Sensory Integration: Theory and Practice, 2nd Edition, F. A Davis, Philadelphia, 3-33.
[54] Williamson, G.G. and Anzalone, M.E. (2001) Sensory Integration and Self-Regulation in Infants and Toddlers: Helping Very Young Children Interact with Their Environment. Zero to Three, Washington DC.
[55] Bisson, N., Tobin, S. and Grondin, S. (2012) Prospective and Retrospective Time Estimates of Children: A Comparison Based on Ecological Tasks. PLoS ONE, 7, e33049. http://dx.doi.org/10.1371/journal.pone.0033049
[56] Droit-Volet, S. (2003) Temporal Experience and Timing in Children. In: Meck, W.H., Ed., Functional and Neural Mechanisms of Interval Timing, CRC Press, Boca Raton, 183-208. http://dx.doi.org/10.1201/9780203009574.ch7
[57] Gautier, T. and Droit-Volet, S. (2002) Attention and Time Estimation in 5- and 8-Year-Old Children: A Dual Task Procedure. Behavioral Processes, 58, 57-66. http://dx.doi.org/10.1016/S0376-6357(02)00002-5
[58] Fuster, J.M. (1990) Prefrontal Cortex and the Bridging of Temporal Gaps in the Perception-Action Cycle. Annals of the New York Academy of Sciences, 608, 318-329. http://dx.doi.org/10.1111/j.1749-6632.1990.tb48901.x
[59] Middleton, F.A. and Strick, P.L. (1994) Anatomical Evidence for Cerebellar and Basal Ganglia Involvement in Higher Cognitive Function. Science, 266, 458-461. http://dx.doi.org/10.1126/science.7939688
[60] Ramnani, N. and Passingham, R.E. (2001) Changes in the Human Brain during Rhythm Learning. Journal of Cognitive Neuroscience, 13, 952-966. http://dx.doi.org/10.1162/089892901753165863
[61] Harrington, D.L., Boyd, L.A., Mayer, A.R., Sheltraw, D.M., Lee, R.R., Huang, M. and Rao, S.M. (2004) Neural Representation of Interval Encoding and Decision Making. Cognitive Brain Research, 21, 193-205. http://dx.doi.org/10.1016/j.cogbrainres.2004.01.010
[62] Tomporowski, P.D., Davis, C.L., Miller, P.H. and Naglieri, J.A. (2008) Exercise and Children’s Intelligence, Cognition, and Academic Achievement. Educational Psychology Review, 20, 111-131. http://dx.doi.org/10.1007/s10648-007-9057-0
[63] Davis, F.A., Carpenter, P.A., Just, M.A. and Shell, P. (1990) What One Intelligence Test Measures: A Theoretical Account of Processing in the Raven Progressive Matrices Test. Psychological Review, 97, 404-431. http://dx.doi.org/10.1037/0033-295X.97.3.404
[64] Gignac, G.E. (2007) Working Memory and Fluid Intelligence Are Both Identical to Reanalyses and Critical Evaluation. Psychology Science, 49, 187-207.
[65] Salthouse, T.A. and Pink, J.E. (2008) Why Is Working Memory Related to Fluid Intelligence? Psycholomic Bulletin and Review, 15, 364-371. http://dx.doi.org/10.3758/PBR.15.2.364
[66] Engel de Abreu, P.M.J., Conway, A.R.A. and Gathercole, S.E. (2010) Working Memory and Fluid Intelligence in Young Children. Intelligence, 38, 552-561. http://dx.doi.org/10.1016/j.intell.2010.07.003
[67] Haavisto, M.L. and Lehto, J.E. (2005) Fluid/Spatial and Crystallized Intelligence in Relation to Domain-Specific Working Memory: A Latent-Variable Approach. Learning and Individual Differences, 15, 1-21. http://dx.doi.org/10.1016/j.lindif.2004.04.002
[68] Christoff, K., Prabhakaran, V., Dorfman, J., Zhao, Z., Kroger, J.K., Holyoak, K.J. and Gabrieli, J.D.E. (2001) Rostrolateral Prefrontal Cortex Involvement in Relational Integration during Reasoning. Neuroimage, 14, 1136-1149. http://dx.doi.org/10.1006/nimg.2001.0922
[69] Kroger, J.K., Sabb, F.W., Fales, C.L., Bookheimer, S.Y., Cohen, M.S. and Holyoak, K.J. (2002) Recruitment of Anterior Dorsolateral Prefrontal Cortex in Human Reasoning: A Parametric Study of Relational Complexity. Cerebral Cortex, 12, 477-485. http://dx.doi.org/10.1093/cercor/12.5.477
[70] Salmi, J., Pallesen, K.J., Neuvonen, T., Brattico, E., Korvenoja, A., Salonen, O. and Carlson, S. (2010) Cognitive and Motor Loops of the Human Cerebro-Cerebellar System. Journal of Cognitive Neuroscience, 22, 2663-2676. http://dx.doi.org/10.1162/jocn.2009.21382
[71] Stoodley, C.J., Valera, E.M. and Schmahmann, J.D. (2012) Functional Topography of the Cerebellum for Motor and Cognitive Tasks: An fMRI Study. Neuroimage, 59, 1560-1570. http://dx.doi.org/10.1016/j.neuroimage.2011.08.065
[72] Hulme, C. and Mackenzie, S. (1992) Working Memory and Sever Learning Difficulties. Erlbaum, Hillsdale.
[73] Pulsifer, M.B. (1996) The Neuropsychology of Mental Retardation. Journal of the International Neuropsychological Society, 2, 159-176. http://dx.doi.org/10.1017/S1355617700001016
[74] Latash, M.L. and Anson, J.G. (1996) What Are “Normal Movements” in Atypical Populations? Behavioral and Brain Sciences, 19, 55-106. http://dx.doi.org/10.1017/S0140525X00041467
[75] Evans, J.J., Floyd, R.G., McGrew, K.S. and LeForgee, M.H. (2002) The Relations between Measures of Cattell- Horn-Carroll (CHC) Cognitive Abilities and Reading Achievement during Childhood and Adolescence. School Psychology Review, 31, 246-262.
[76] McGrew, K.S. and Knopik, S.N. (1993) The Relationship between the WJ-RGf-Gc Cognitive Clusters and Writing Achievement across the Life-Span. School Psychology Review, 22, 687-695.
[77] Ram-Tsur, R., Faust, M. and Zivotofsky, A.Z. (2008) Poor Performance on Serial Visual Tasks in Persons with Reading Disabilities: Impaired Working Memory? Journal of Learning Disabilities, 41, 437-450. http://dx.doi.org/10.1177/0022219408321141
[78] Floyd, R.G., McGrew, K.S. and Evans, J.J. (2008) The Relative Contributions of the Cattell-Horn-Carroll Cognitive Abilities in Explaining Writing Achievement during Childhood and Adolescence. Psychology in the Schools, 45,132-144. http://dx.doi.org/10.1002/pits.20284
[79] Reynolds, A.J., Temple, J.A., Robertson, D.L. and Mann, E.A. (2001) Long-Term Effects of an Early Childhood Intervention on Educational Achievement. Journal of the American Medical Association, 285, 2339-2346. http://dx.doi.org/10.1001/jama.285.18.2339                 eww141216lx

评论

此博客中的热门博文

Does Immigration Promote the Investment of the Monopolistic Firm?

In the present paper, we examine the effect of increasing uncertainty of immigrants’ growth on the optimal timing of investment of a firm that has a monopolistic power over the labor market. It is revealed that when the uncertainty of immigrants’ growth is more than a threshold level, increasing uncertainty of immigrants’ growth accelerates the optimal timing of firms’ investment and enhances the economic growth, even if the uncertainty of immigrants’ growth is formulated by the geometric Brownian motion, which is in sharp contrast to the standard result that an increase in the uncertainty postpones the optimal timing. With an increase in the immigrants over the past ten years, workforces in the host countries have been growing significantly to the extent that the immigrants represent 70% of the increase in the workforce in Europe, and 47% in the United States as OECD indicates. In the present paper, we attempted to investigate the effect of increased uncertainty caused by the growi...

Education Policy Implementation: A Mechanism for Enhancing Primary Education Development in Zanzibar

Education is one of the fundamental rights of individuals; therefore, the government of a country needs to develop and strengthen educational policy and quality as well as to ensure that everyone has equal access to basic education. The improvement of access and quality of education in the world is becoming as an essential factor in development, whereas the basic education (primary school), is acknowledged as a foundation of the higher educational development for every country. To fulfill this goal, governments introduce several policies and procedures; however, it requires some reforms and participation from the politician, policymakers, and other stakeholders to re-examine educational policy so that it can lead to multiplication and betterment of the reforms. Educational reforms actually focus on accountability. A positive educational development and reform is very challenging and needs more effort and strategy on how to use and utilize the resources effectively as such it can achie...