Sena Kırlangıç1, Sinan Bozkurt1
1Marmara University, Department of Physical Education and Sports Teaching, Istanbul, Türkiye
The Effect of Fundamental Movement Skills Training Implemented with the Differential Learning Approach on the Attention Skills of Elementary School Students
Sport Mont 2025, 23(2), Ahead of Print | DOI: 10.26773/smj.250619
Abstract
Physical activity is essential for the healthy growth and development of children, supporting motor skills as well as cognitive and psychosocial abilities. Research has demonstrated that children who engage in regular physical activity show improvements in executive functions, memory, and attention. The Differential Learning approach promotes variability in movement experiences, minimizing explicit instructions and corrections, which encourages adaptability and cognitive-motor interactions crucial for attention development. This study aims to examine the impact of a fundamental movement skills training program based on the Differential Learning approach on the attention skills of elementary school students. The sample consisted of 24 students (13 male, 11 female, aged 8-9 years) from the 3rd grade of a school in Beykoz, Istanbul. The program, lasting 13 weeks with two hours of weekly sessions, utilized Yellow Cards from Physical Activity Cards and focused on fundamental movement skills. Attention was assessed using the D2 Test of Attention as both a pre-test and post-test. Descriptive statistics and a Paired Sample T-test were used to analyze the data, revealing significant differences in psychomotor speed, quality of work, and attention balance speed (p<0.05). The mean scores for psychomotor speed increased from 2.50 to 4.54, work quality from 2.17 to 3.33, and speed-attention balance from 2.04 to 4.54, indicating a statistically significant improvement in these subdimensions. These results suggest that the Differential Learning approach effectively contributes to the development of attention skills in 3rd grade students.
Keywords
differential learning, motor development, attention, physical activity, cognitive skills
References
Adsız, E. (2010). Research on the effect of regular sports on attention in primary school students. Unpublished Master's Thesis, Institute of Health Sciences, Department of Physical Education and Sports, Ege University, Izmir.
Akcınlı, N. (2005). The relationship between movement education, attention, and memory development in eight-year-old children. Unpublished Master's Thesis, Institute of Health Sciences, Department of Physical Education and Sports Teaching, Celal Bayar University, Manisa.
Alesi, M., Bianco, A., Luppina, G., Palma, A., & Pepi, A. (2016). Improving children's coordinative skills and executive functions: The effects of a football exercise program. Perceptual and Motor Skills, 122(1), 27-46.
Baysal, Ş. (2019). The investigation of sports participation motivation and success motivation of secondary school students participating in school sports (Gaziantep case study) [Master’s Thesis]. Ağrı İbrahim Çeçen University, Institute of Social Sciences.
Best, J. R. (2010). Effects of physical activity on children's executive function: Contributions of experimental research on aerobic exercise. Developmental Review, 30(4), 331-351.
Bidzan-Bluma & Małgorzata Lipowska (2018). Physical activity and cognitive functioning of children: A systematic review. International Journal of Environment Research and Public Health, 15, 800.
Borrego-Balsalobre, F. J., Martínez-Moreno, A., Morales-Baños, V., & Díaz-Suárez, A. (2021). The influence of the psychomotor profile in the improvement of learning in early childhood education. International Journal of Environmental Research and Public Health, 18(23), 12655.
Brickenkamp, R., & Zillmer, E. (1998). The d2 Test of Attention. Hogrefe & Huber Publishers.
Buszard, T., Farrow, D., Reid, M., & Masters, R. (2017). Scaling the equipment and play area in children's sport to improve motor skill acquisition: A systematic review. Sports Medicine, 46(6), 829-843.
Campbell, D.T., & Stanley, J.C. (1963). Experimental and quasi-experimental designs for research. Chicago: Rand McNally & Company.
Chaddock-Heyman, L., Erickson, K.I., Voss, M.W., Knecht, A.M., Pontifex, M.B., Castelli, D.M., ... Kramer, A.F. (2013). The effects of physical activity on functional MRI activation associated with cognitive control in children: A randomized controlled intervention. Front. Hum. Neurosci. 7, 72.
Diamond, A. (2015). Effects of physical exercise on executive functions: Going beyond simply moving to moving with thought. Annals of Sports Medicine and Research, 2(1), 1011.
Diamond, A., & Lee, K. (2011). Interventions shown to aid executive function development in children 4 to 12 years old. Science, 333(6045), 959-964.
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.
Gallahue, D. L., & Donnelly, F. C. (2003). Developmental physical education for all children. Human Kinetics.
George, D., & Mallery, M. (2010). SPSS for Windows Step by Step: A Simple Guide and Reference, 17.0 update.
Göktepe, M., Akalın, C.T., & Göktepe, M.M. (2016). The investigation of attention levels in children who practice skiing. International Journal of Science Culture and Sport, 4(3), 722-731.
Henz, D., & Schöllhorn, W. I. (2016). Differential training facilitates early consolidation in motor learning. Frontiers in Human Neuroscience, 10, 611.
Henz, D., & Schöllhorn, W. I. (2017). Sensorimotor training and complex motor learning in applied settings: A review. Current Opinion in Psychology, 16, 51-55.
Henz, D., Wagner, H., & Schöllhorn, W. I. (2018). Supervised and unsupervised machine learning in human movement science: Comparing self-organizing maps with principal component analysis. Frontiers in Psychology, 9, 1280.
Hillman, C. H., Erickson, K. I., & Kramer, A. F. (2014). Be smart, exercise your heart: Exercise effects on brain and cognition. Nature Reviews Neuroscience, 9(1), 58-65.
IBM Corp. (2017). IBM SPSS Statistics for Windows, Version 25.0. Armonk, NY: IBM Corp.
İrez, S. G., Yaman, M., İrez Babayigit, G., & Saygın, Ö. (2013). The effect of physical activity cards on teacher behaviors in primary school physical education classes. International Journal of Human Sciences, 10(1), 1717-1724.
Kanbir, Ö., Erkut, A. O., Tekin, R., & Kanbir, L. (2024). The investigation of the effects of complex motor movements and exergame games on attention, hyperactivity, impulsivity, and timing conditions in middle school students. Journal of Health and Sports Sciences, 7(2), 103-125.
Kirici, H. M. (2008). The effect of an 8-week movement education program on motor performance of 4-6-year-old children in preschool educational institutions [Master’s Thesis]. Institute of Social Sciences.
Kirk, D. (2010). Physical education futures. Routledge.
Lakes, K. D., & Hoyt, W. T. (2004). Promoting self-regulation through school-based martial arts training. Journal of Applied Developmental Psychology, 25(3), 283-302.
Lubans, D., Richards, J., Hillman, C., Faulkner, G., Beauchamp, M., Nilsson, M., & Biddle, S. (2016). Physical activity for cognitive and mental health in youth: A systematic review of mechanisms. Pediatrics, 138(3), e20161642.
MEB (2012a). Ministry of National Education, Board of Education and Discipline, Decision No. 139, dated 29.08.2012.
MEB (2012b). Physical activity and play activities course curriculum (Grades 1-4). TTKB State Publishing House. Ankara.
Metzler, M. W. (2017). Instructional models for physical education. Routledge.
Öcal, N. K., & Aybek, B. (2023). Problems faced by teachers in philosophy for children (P4C) education. Educational Sciences Journal, 45(2), 123-135.
Özdemir, H. (2019). The effect of physical activity cards and video game console movement activities on attention, screen, and paper reading performance in 10-11-year-old children [Master's Thesis, Marmara University, Turkey].
Pesce, C. (2012). Shifting the focus from quantitative to qualitative exercise characteristics in exercise and cognition research. Journal of Sport and Exercise Psychology, 34(6), 766-786.
Posner, M. I., & Petersen, S. E. (1990). The attention system of the human brain. Annual Review of Neuroscience, 13(1), 25-42.
Rink, J. E. (2013). Teaching physical education for learning. McGraw-Hill.
Schöllhorn, W. (1999). Differential learning: A new approach to motor learning. In Proceedings of the International Conference on Motor Learning (pp. 78-83).
Schöllhorn, W. I. (2009). Differential learning: A revolutionary approach to teaching and training sport and motor skills. In M. Schöllhorn (Ed.), Movement science and education: The importance of learning with variation (pp. 17-36). Springer.
Schöllhorn, W. I. (2016). Individualized movement training for sport and health. Human Movement Science, 47, 154-162.
Schöllhorn, W. I., Hegen, P., & Davids, K. (2009). The nonlinear nature of learning – A differential learning approach. Open Sports Sciences Journal, 2(1), 100-112.
Tine, M. T., & Butler, A. G. (2012). Acute aerobic exercise impacts selective attention: An exceptional boost in lower-income children. Educational Psychology, 32, 821–834.
Toker, M. Z. (1993). Visual perception test d2: Validity and reliability study (Unpublished master's thesis). Boğaziçi University, Istanbul.
Tomporowski, P. D., McCullick, B., Pendleton, D. M., & Pesce, C. (2011). Exercise and children's cognition: The role of exercise characteristics and a place for metacognition. Journal of Sport and Exercise Psychology, 33(5), 602-609.
Topsakal, N., Bozkurt, S., & Akın, H. (2019). The effects of basic movement skills training with the differential learning approach on attention and motoric characteristics in elementary school children. Journal of Physical Education and Sports Studies, 11(2), 95-105.
Van der Fels, I. M., Te Wierike, S. C., Hartman, E., Jongmans, M. J., Smith, J., & Visscher, C. (2015). Associations between gross motor skills and cognitive development in toddlers: A systematic review. Journal of Science and Medicine in Sport, 18(6), 697–703.
Wagner, H., & Schöllhorn, W. I. (2014). New findings on performance-relevant movement variability in elite sports. Human Movement Science, 34, 1-12.
Yaşar, T. S., Beyleroğlu, M., Hazarb, M., & Işık, Ö. (2018). The effect of Life Kinetik training on attention, eye-hand coordination, and shooting performance in archers. ERPA 2018, 580.
Yurdakul, N. A., Çamlıyer, H., Çamlıyer, H., Karabulut, N., & Soytürk, M. (2012). The effects of movement training on attention and memory development in eight-year-old children. Selçuk University Journal of Physical Education and Sports Science, 14(1), 103-108.