The effects of cross crawl and owl exercises on memory and focus in early childhood

Abstract

Cognitive abilities such as memory and concentration are essential for early childhood development, influencing academic readiness and social adjustment. However, many children face challenges in sustaining attention and retaining information, and existing intervention methods often lack integration and movement-based engagement. This study aims to evaluate the effectiveness of a combined Brain Gym intervention—Cross Crawl and The Owl exercises on improving memory and concentration in early childhood. A quasi-experimental design with pre-test and post-test control groups was employed, involving 60 children aged 4–6 years from Skoebi-Do Child Care Centre, Bali. Participants were randomly assigned to an experimental group (receiving both Cross Crawl and The Owl techniques) and a control group (receiving only Cross Crawl). Data were collected using structured observation instruments, which had been validated and tested for reliability to ensure accurate measurement of cognitive outcomes. The findings demonstrated significant improvements in memory and concentration among children in the experimental group compared to the control group. These results indicate that integrative Brain Gym interventions are more effective in stimulating core cognitive functions during early childhood. This study contributes to the growing evidence supporting movement-based educational strategies as a practical and accessible approach for enhancing cognitive development in early learners.

Keywords
  • Combined brain gym
  • Memory P
  • reschool children
  • Concentration
  • Early childhood
  • Cognitive stimulation
  • Quasi-experimental design
References
  1. Adimayanti, E., Siyamti, D., & Irwasih, S. (2022). The Effectiveness of Brain Gym on the Development of Preschool are being Hospitalized. Proceedings of Conference on Health Universitas Ngudi Waluyo, 1(1 SE-Articles), 20–25. https://callforpaper.unw.ac.id/index.php/ICH-UNW/article/view/15
  2. Adriani, D., Imran, Y., Mawi, M., Amani, P., & Ilyas, E. I. I. (2020). Effect of Brain Gym® exercises on cognitive function and brain-derived neurotrophic factor plasma level in elderly: a randomized controlled trial. Universa Medicina, 39(1), 34–41.
  3. Anggraini, S., & Dewi, S. K. (2022). Effect of Brain Gym in Increasing the Learning Concentration of 6th Grade on Online Learning during the Covid-19 Pandemic. Malaysian Journal of Medicine & Health Sciences, 18.
  4. Baron, J. (2005). Rationality and intelligence. Cambridge University Press.
  5. Bodrova, E., & Leong, D. J. (2020). The Impact of Psychological Sciences on Early Childhood Education: Child’s Mind in Society–A Vygotskian Approach to Early Childhood Education. In Scientific Influences on Early Childhood Education (pp. 79–92). Routledge.
  6. Capodieci, A., Gola, M. L., Cornoldi, C., & Re, A. M. (2018). Effects of a working memory training program in preschoolers with symptoms of attention-deficit/hyperactivity disorder. Journal of Clinical and Experimental Neuropsychology, 40(1), 17–29.
  7. Chen, W., Wang, X., Gu, X., & Chen, J. (2021). The impacts of coordinated-bilateral ball skills intervention on attention and concentration, and cardiorespiratory fitness among fourth-grade students. International Journal of Environmental Research and Public Health, 18(21), 11634.
  8. Creswell, J. W., & Creswell, J. D. (2017). Research design: Qualitative, quantitative, and mixed methods approaches. Sage publications.
  9. Dawood, R. F. A., MostafaDarweesh, H. A., & ELdesoky, H. A. (2022). Impact of brain gym training on cognitive performance of undergraduate nursing students. Egyptian Journal of Health Care, 13, 1036–1051.
  10. Devayanti, R., Redjeki, S., Suryaman, R., Rahayu, E. R., Fitrianingsih, N., Yosali, M. A., Rasid, H. Al, & Rahmawati, A. F. (2024). The effect of brain gym on learning concentration for school age children. International Research Journal of Pharmacy and Medical Sciences, 7(5), 12–16.
  11. Dian, D., Mediani, H. H., & Minnatillah, M. (2022). Brain Games and Gymnastics on Increasing Concentration Power of Early Childhood. Jurnal Obsesi: Jurnal Pendidikan Anak Usia Dini, 6(6), 5615–5620.
  12. El Khuluqo, I. (2020). Brain Gym Optimization Methods in Improving Early Age Child Fine Motor Skills. 1st International Conference on Early Childhood Care Education and Parenting (ICECCEP 2019), 37–41.
  13. Fathy Ahmed Dawood, R., Ahmed Mostafa Darweesh, H., & Ahmed ELdesoky, H. (2022). Impact of Brain Gym Training on Cognitive Performance of Undergraduate Nursing Students. Egyptian Journal of Health Care, 13(1), 1036–1051.
  14. Habsy, B. A., Rachmawati, A. P., Wiyono, R., & Rakhmanita, A. (2023). Penerapan perkembangan kognitif Jean Piaget dan perkembangan bahasa Vygotsky dalam pembelajaran. TSAQOFAH Jurnal Penelitian Guru Indonesia, 4, 143–158.
  15. Hake, R. (2002). Lessons from the physics education reform effort. Conservation Ecology, 5(2).
  16. He, Z., Lin, W., Zheng, H., Zhang, F., Jones, M., Aitchison, L., Xu, X., Liu, M., Kristensson, P. O., & Shen, J. (2024). Human-inspired Perspectives: A Survey on AI Long-term Memory. ArXiv Preprint ArXiv:2411.00489.
  17. Joo, Y. S., Magnuson, K., Duncan, G. J., Schindler, H. S., Yoshikawa, H., & Ziol-Guest, K. M. (2020). What Works in Early Childhood Education Programs?: A Meta–Analysis of Preschool Enhancement Programs. Early Education and Development, 31(1), 1–26. https://doi.org/10.1080/10409289.2019.1624146
  18. Lasmawan, I. W., & Budiarta, I. W. (2020). Vygotsky’s zone of proximal development and the students’ progress in learning (A heutagogcal bibliographical review). JPI (Jurnal Pendidikan Indonesia), 9(4), 545–552.
  19. Maniazhagu, D. (2022). Effect of two modes of integrative neuromuscular training on explosive power. International Journal of Physical Education Sports Management and Yogic Sciences, 12(2), 18-26.
  20. Margolis, E. T., Davel, L., Bourke, N. J., Bosco, C., Zieff, M. R., Monachino, A. D., ... & Gabard-Durnam, L. J. (2024). Longitudinal effects of prenatal alcohol exposure on visual neurodevelopment over infancy. Developmental Psychology, 60(9), 1673.
  21. Markant, J., & Amso, D. (2022). Context and attention control determine whether attending to competing information helps or hinders learning in school‐aged children. Wiley Interdisciplinary Reviews: Cognitive Science, 13(1), e1577.
  22. Mendrofa, F. A. M., Iswanti, D. I., & Hani, U. (2020). Efficacy of Brain Gym on the Cognitive Function Improvement of People with Dementia. Jurnal Keperawatan Jiwa, 8(4), 557.
  23. Ramesh, S. (2022). The theories of cognitive development. In The Political Economy of Human Behaviour and Economic Development: Psychology and Economic Development (pp. 143–180). Springer.
  24. Reina, A. L. V. (2020). Early Stimulation in Learning Activation on Early Childhood. International Journal of Psychosocial Rehabilitation, 24(2 SE-Articles), 579–590. https://doi.org/10.61841/edgst377
  25. Salleg-Cabarcas, M. J., Robledo-Castro, C., & Monsalve-Vertel, C. P. (2024). Effect of Hit-Sport-Game Exercise Training on Self-Control and Regulation in Children With Attention Deficit Hyperactivity Disorder (ADHD). Global Pediatric Health, 11, 2333794X241287095.
  26. Savina, E. (2021). Self-regulation in preschool and early elementary classrooms: Why it is important and how to promote it. Early Childhood Education Journal, 49(3), 493–501.
  27. Serra, L., Raimondi, S., Di Domenico, C., Maffei, S., Lardone, A., Liparoti, M., Sorrentino, P., Caltagirone, C., Petrosini, L., & Mandolesi, L. (2021). The beneficial effects of physical exercise on visuospatial working memory in preadolescent children. AIMS Neuroscience, 8(4), 496.
  28. Shavit, Y., Friedman, I., Gal, J., & Vaknin, D. (2018). Emerging Early Childhood Inequality: On the Relationship between Poverty, Sensory Stimulation, Child Developement, and Achievement. Taub Center Jerusalem, Israel.
  29. Sinaga, E. S., & Syari, M. (2022). The Effect of Brain Gym on Improving Fine Motoric and Gross Motoric Skills in Pre-School Children. International Journal of Public Health Excellence (IJPHE), 2(1), 318–323.
  30. Smith, N., Georgiou, M., King, A. C., Tieges, Z., Webb, S., & Chastin, S. (2021). Urban blue spaces and human health: A systematic review and meta-analysis of quantitative studies. Cities, 119, 103413.
  31. Srinivas, N. S., Vimalan, V., Padmanabhan, P., & Gulyás, B. (2021). An overview on cognitive function enhancement through physical exercises. Brain Sciences, 11(10), 1289.
  32. Suardipa, I. P. (2020). Proses Scaffolding Pada Zone Of Proximal Development (ZPD) Dalam Pembelajaran. Widyacarya: Jurnal Pendidikan, Agama Dan Budaya, 4(1), 79–92.
  33. Vásquez-Carrasco, E., Gómez, C. S., Valdés-Badilla, P., Hernandez-Martinez, J., Villagrán-Silva, F., Aravena-Sagardia, P., Sandoval, C., & Miralles, P. M. (2025). Effectiveness of Combined Cognitive Stimulation and Physical Activity Interventions on Activities of Daily Living, Cognitive Function, and Physical Function in Older People with Mild Cognitive Impairment: A Systematic Review with Meta-Analysis. Journal of Clinical Medicine, 14(7), 2261.
  34. Wang, Y., Liu, H., Zeng, P., Ji, L., Zhou, Y., Zhou, L., & Tao, Y. (2023). Electrical nerve stimulation for sensory-neural pathway reconstruction in upper-limb amputees. Frontiers in Neuroscience, 17, 1114962.