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Panagiotis Kapidis1, Maria Giannousi1, Nikolaos Vernadakis1, Marina Papastergiou2, Eleni Zetou1, Panagiotis Antoniou1

1Democritus University of Thrace, Department of Physical Education and Sport Sciences, Komotini, Greece
2University of Thessaly, Department of Physical Education and Sport Science, Trikala, Greece

Enhancing Elementary School Students’ Visual Perceptual Skills: A Comparative Study of Oculus Quest 2 Exergames and Conventional Activities

Sport Mont 2024, 22(2), 139-146 | DOI: 10.26773/smj.240719

Abstract

The purpose of this study was to investigate potential differences between two exercise training programs among elementary school students: one based on Oculus Quest 2 exergames and the other on conventional activities, focusing on the Visual Pursuit (VP) skills of visual tracking and selective attention. The study comprised two cohorts: the Oculus Quest (OQ) group and the Typical Activity (TA) group. Engaged a total of forty (n=40) students, specifically selected from the fifth and sixth grades of two public elementary schools situated in the northern region of Greece. The participants, aged 10 to 12 years, consisted of 17 boys and 23 girls. Evaluation of the children’s VP abilities occurred through a Visual Pursuit Test administered prior to the interventions (pre-test), after the intervention sessions (post-test), and one month after the interventions (1-month retention test). This program spanned a duration of 6 weeks, with sessions held twice per week, each session lasting 30 minutes. Two-way analyses of variance with repeated measures, were conducted to determine effect of training program groups (TA, OQ) and measurements (pre-test, post-test, 1-month retention test) across time on VP performance. Analysis of the data illustrated that the post-test and 1-month retention test VP scores were remarkably greater than pre-test VP scores in both groups. In conclusion, the findings indicate that both utilizing Oculus Quest 2 VR and conventional activities as interventions show promise in enhancing the VP abilities of elementary school children. This suggests that VR technology, alongside typical methods, could be a valuable tool in Physical Education settings for improving cognitive skills among young learners.

Keywords

visual pursuit, virtual reality, elementary education, perceptual abilities, children



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References

Here are the citations with the requested formatting:

Akbaş, A., Marszałek, W., Kamieniarz, A., Polechoński, J., Słomka, K. J., & Juras, G. (2019). Application of Virtual Reality in Competitive Athletes - A Review. Journal of Human Kinetics, 69, 5-16. https://doi.org/10.2478/hukin-2019-0023

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. https://doi.org/10.1177/0031512515627527

Amprasi, E., Vernadakis, N., Zetou, E., & Antoniou, P. (2022). Effect of a full immersive virtual reality intervention on selective attention in children. International Journal of Instruction, 15(1), 565-582. https://doi.org/10.29333/iji.2022.15132a

Appelbaum, L. G., & Erickson, G. (2018). Sports vision training: A review of the state-of-the-art in digital training techniques. International Review of Sport and Exercise Psychology, 11(1), 160-189. https://doi.org/10.1080/1750984X.2016.1266376

Best J. R. (2010). Effects of Physical Activity on Children's Executive Function: Contributions of Experimental Research on Aerobic Exercise. Developmental Review, 30(4), 331–551. https://doi.org/10.1016/j.dr.2010.08.001

Biehl, T., Wagner, B., Karner, M., Bernd, L. (2005). Vienna Test System: Measures of Maximum Performance. Visual Pursuit Test (LVT), Test Review. The British Psychological Society. Retrieved 6 June 2024, from https://doi.org/10.53841/bpstest.2005.lvt

Brown, P. C., Roediger, H. L., & McDaniel, M. A. (2020). Make it stick: The science of successful learning. Cambridge, MA: The Belknap Press of Harvard University Press. https://doi.org/10.4159/9780674419377

Burris, K, Liu, S, & Appelbaum, L. (2020). Visual-motor expertise in athletes: Insights from semiparametric modelling of 2317 athletes tested on the Nike SPARQ Sensory Station, Journal of Sports Sciences, 38(3), 320-329, https://doi.org/10.1080/02640414.2019.1698090

Clark, R. E., & Feldon, D. F. (2014). Ten common but questionable principles of multimedia learning. In R. E. Mayer (Ed.), The Cambridge handbook of multimedia learning (2nd ed., pp. 151-173). Cambridge University Press. https://doi.org/10.1017/CBO9781139547369.010

Dalziell, A., Booth, J. N., Boyle, J., & Mutrie, N. (2019). Better movers and thinkers: An evaluation of how a novel approach to teaching physical education can impact children’s physical activity, coordination and cognition. British Educational Research Journal, 45(3), 576–591. https://doi.org/10.1002/berj.3514

Deci, E. L., & Ryan, R. M. (2000). The" what" and" why" of goal pursuits: Human needs and the self-determination of behavior. Psychological Inquiry, 11(4), 227-268. https://doi.org/10.1207/S15327965PLI1104_01

Gabbard, C. (2012). Lifelong motor development (6th ed.). San Francisco, CA: Pearson.

Gray R. (2017). Transfer of Training from Virtual to Real Baseball Batting. Frontiers in Psychology, 8, 2183. https://doi.org/10.3389/fpsyg.2017.02183

Grosprêtre, S., Marcel-Millet, P., Eon, P., & Wollesen, B. (2023). How Exergaming with Virtual Reality Enhances Specific Cognitive and Visuo-Motor Abilities: An Explorative Study. Cognitive science, 47(4), e13278. https://doi.org/10.1111/cogs.13278

Hadlow, S. M., Panchuk, D., Mann, D. L., Portus, M. R., & Abernethy, B. (2018). Modified perceptual training in sport: A new classification framework. Journal of Science and Medicine in Sport, 21(9), 950-958. https://doi.org/10.1016/j.jsams.2018.01.011

Hamari, J., & Keronen, L. (2017). Why do people play games? A meta-analysis. International Journal of Information Management. 2017, 37(3), 125-141. http://dx.doi.org/10.1016/j.ijinfomgt.2017.01.006

Hashemi, A., Khodaverdi, Z., & Zamani, M. H. (2022). Effect of Wii Fit training on visual perception and executive function in boys with developmental coordination disorders: A randomized controlled trial. Research in Developmental Disabilities, 124, 104196. https://doi.org/10.1016/j.ridd.2022.104196

Hejtmancik, J. F., & Shiels, A. (2015). Overview of the Lens. Progress in Molecular Biology and Translational Science, 134, 119-127. https://doi.org/10.1016/bs.pmbts.2015.04.006

Johnson, C. I., & Mayer, R. E. (2009). A testing effect with multimedia learning. Journal of Educational Psychology, 101(3), 621-629. https://doi.org/10.1037/a0015183

Klostermann, A., & Mann, D. L. (2019). Current Issues in Perceptual Training: Facing the Requirement to Couple Perception, Cognition, and Action in Complex Motor Behavior. Frontiers in Psychology, 10, 2680. https://doi.org/10.3389/fpsyg.2019.02680

Kolb, D. A. (1984). Experiential learning: Experience as the source of learning and development. Englewood Cliffs, NJ: Prentice Hall.

Kozik, P., & Enns, J. T. (2021). Athletics and attention: Bi-directional influences in the lab and on the field. Current Issues in Sport Science (CISS), 6, 002. https://doi.org/10.36950/2021ciss002

Laby, D. M., Kirschen, D. G., & Pantall, P. (2011). The visual function of Olympic-level athletes-an initial report. Eye & contact lens, 37(3), 116-122. https://doi.org/10.1097/ICL.0b013e31820c5002

Lister, M., West, J. H., Cannon, B., Sax, T., Brodegard, D. (2014). Just a fad? Gamification in health and fitness apps. JMIR Serious Games, 2(2), e9. https://doi.org/10.2196/games.3413

Logan, S. W., Robinson, L. E., Wilson, A. E., & Lucas, W. A. (2012). Getting the fundamentals of movement: A meta-analysis of the effectiveness of motor skill interventions in children. Child: Care, Health and Development, 38(3), 305-315.

Mahabadi, N., & Al Khalili, Y. (2023). Neuroanatomy, Retina. In StatPearls. StatPearls Publishing.

Mann, D. T., Williams, A. M., Ward, P., & Janelle, C. M. (2007). Perceptual-cognitive expertise in sport: a meta-analysis. Journal of Sport & Exercise Psychology, 29(4), 457-478. https://doi.org/10.1123/jsep.29.4.457

Merchant, Z., Goetz, E. T., Cifuentes, L., Keeney-Kennicutt, W., & Davis, T. J. (2014). Effectiveness of virtual reality-based instruction on students' learning outcomes in K-12 and higher education: A meta-analysis. Computers & Education, 70, 29-40. https://doi.org/10.1016/j.compedu.2013.07.033

Payne, V. G., & Isaacs, L. D. (2011). Human motor development: A lifespan approach (8th ed.). New York: McGraw-Hill.

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. https://doi.org/10.1123/jsep.34.6.766

Poltavski, D., Biberdorf, D., & Praus Poltavski, C. (2021). Which Comes First in Sports Vision Training: The Software or the Hardware Update? Utility of Electrophysiological Measures in Monitoring Specialized Visual Training in Youth Athletes. Frontiers in Human Neuroscience, 15, 732303. https://doi.org/10.3389/fnhum.2021.732303

Rauter, G., Sigrist, R., Koch, C., Crivelli, F., van Raai, M., Riener, R., & Wolf, P. (2013). Transfer of complex skill learning from virtual to real rowing. PloS One, 8(12), e82145. https://doi.org/10.1371/journal.pone.0082145

Robinson, L. E., & Goodway, J. D. (2009). Instructional climates in preschool children who are at-risk. Part II: Perceived physical competence and object control skill development. Research Quarterly for Exercise and Sport, 80(3), 543-551.

Ryan, R. M., & Deci, E. L. (2018). Self-determination theory: Basic psychological needs in motivation, development, and wellness. New York, NY: Guilford Publications.

Schunk, D. H., & Zimmerman, B. J. (2012). Motivation and self-regulated learning: Theory, research, and applications. New York, NY: Routledge. https://doi.org/10.4324/9780203831076

Smeeton, N. J., Page, J., Causer, J., Wilson, M., Gray, R., & Williams, A. M. (2013). The BASES Expert Statement on the Effectiveness of Vision Training Programmes. The Sport and Exercise Scientist, 38, 12-13.

Schmid, G., Sauter, C., Stepansky, R., Lobentanz, I. S., & Zeitlhofer, J. (2005). No influence on selected parameters of human visual perception of 1970 MHz UMTS-like exposure. Bioelectromagnetics, 26(4), 243–250. https://doi.org/10.1002/bem.20076

Tirp, J., Steingröver, C., Wattie, N., Baker, J., & Schorer, J. (2015). Virtual realities as optimal learning environments in sport: A transfer study of virtual and real dart throwing. Psychological Test and Assessment Modeling, 57(1), 57–69.

Uchida, Y., Kudoh, D., Higuchi, T., Honda, M., & Kanosue, K. (2013). Dynamic visual acuity in baseball players is due to superior tracking abilities. Medicine and Science in Sports and Exercise, 45(2), 319-325. https://doi.org/10.1249/MSS.0b013e31826fec97

Vernadakis, N., Gioftsidou, A., Antoniou, P., Ioannidis, D., & Giannousi, M. (2012). The impact of Nintendo Wii to physical education students’ balance compared to the traditional approaches. Computers & Education, 59(2), 196-205.

Voss, M. W., Kramer, A. F., Basak, C., Prakash, R. S., & Roberts, B. (2010), Are expert athletes ‘expert’ in the cognitive laboratory? A meta-analytic review of cognition and sport expertise. Applied Cognitive Psychology, 24, 812-826. https://doi.org/10.1002/acp.1588

Wang, Q., Woo, H. L., Quek, C. L., Yang, Y., & Liu, M. (2014). Using the Facebook group as a learning management system: An exploratory study. British Journal of Educational Technology, 43(3), 428-438. https://doi.org/10.1111/j.1467-8535.2011.01195.x

Williams, A. M., Ford, P. R., Eccles, D. W., Ward, P., & Library, W. O. (2011). Perceptual-cognitive expertise in sport and its acquisition: implications for applied cognitive psychology. Applied Cognitive Psychology, 25, 432-442. https://doi.org/10.1002/acp.1710

World Medical Association (2023). Handbook of WMA policies. Retrieved February 21, 2024, from: https://www.wma.net/wp-content/uploads/2024/02/HB-E-Version-2023-1.pdf