Research Article

Effect of Ergonomic Training and Exercise in Esports Players: A Randomized Controlled Trial

Volume: 7 Number: 4 July 25, 2024
EN

Effect of Ergonomic Training and Exercise in Esports Players: A Randomized Controlled Trial

Abstract

This study aimed to investigate the effectiveness of exercises given with ergonomics training on sleep, neck, and upper extremity functions in esports players. Fifty professional or amateur esports players were randomly divided into two groups: an exercise group that received exercise and ergonomics training and a control group that received only ergonomics training. The exercise program was applied three days a week for eight weeks. Before and following the study, the participants were evaluated using the Disabilities of the Arm, Shoulder, and Hand Questionnaire (DASH), the Neck Disability Questionnaire (NDI), the Rapid Upper Extremity Assessment (RULA), and the Pittsburgh Sleep Quality Index (PSQI). Following the implementation of an intervention, there were notable declines in both the NDI and RULA scores in both groups. Conversely, while a reduction in the DASH and PSQI scores was observed in the exercise group, this was not evident in the control group. The decline in NDI and DASH scores in the exercise group following the intervention period was found to be statistically significant when compared to the control group (p < 0.01). The application of physical exercise improving thoracic and shoulder mobility, nerve stretching, and hand/wrist strength and mobility, along with ergonomics training, has been shown to have a positive impact on the neck, upper extremity functions, and sleep quality of the esports players.

Keywords

Ergonomics , Exercise , Esports , Neck pain , Sleep

References

  1. Ağargün MY, K. H. A. Ö. (1996). The validity and reliability of the Pittsburgh Sleep Quality Index. Türk Psikiyatri Dergisi, 7, 107–115.[CrossRef]
  2. Aslan, E., Karaduman, A., Yakut, Y., Aras, B., Simsek, I. E., & Yaglý, N. (2008). The cultural adaptation, reliability and validity of neck disability index in patients with neck pain: a Turkish version study. Spine, 33(11), E362-5. [CrossRef]
  3. Babak Vahdatpour, M. B. M. R. T. (2015). Investigating Musculoskeletal Discomforts and Its Relation to Workplace Ergonomic Conditions among Computer Office Workers at Alzahra Hospital, Isfahan, Iran. Journal of Isfahan Medical School , 33(346), 1299–1307. [CrossRef]
  4. Bányai, F., Griffiths, M. D., Király, O., & Demetrovics, Z. (2019). The Psychology of Esports: A Systematic Literature Review. Journal of Gambling Studies, 35(2), 351–365. [CrossRef]
  5. Borbély, A. A., & Achermann, P. (1999). Sleep homeostasis and models of sleep regulation. Journal of Biological Rhythms, 14(6), 557–568. [CrossRef]
  6. Buysse, D. J., Reynolds, C. F., 3rd, Monk, T. H., Berman, S. R., & Kupfer, D. J. (1989). The Pittsburgh Sleep Quality Index: a new instrument for psychiatric practice and research. Psychiatry research, 28(2), 193–213. [CrossRef]
  7. da Costa, B., & Vieira, E. (2008). Stretching to reduce work-related musculoskeletal disorders: A systematic review. Journal of Rehabilitation Medicine, 40(5), 321–328. [CrossRef]
  8. De la Corte-Rodriguez, H., Roman-Belmonte, J. M., Resino-Luis, C., Madrid-Gonzalez, J., & Rodriguez-Merchan, E. C. (2024). The Role of Physical Exercise in Chronic Musculoskeletal Pain: Best Medicine—A Narrative Review. In Healthcare (Switzerland) (Vol. 12, Issue 2). [CrossRef]
  9. Dockrell, S., Bennett, K., & Culleton-Quinn, E. (2015). Computer use and musculoskeletal symptoms among undergraduate university students. Computers and Education, 85. [CrossRef]
  10. Dongsheng, Y., Xiaohang, Y., & Daofeng, K. (2011). The Present Situation and Development Trend of E-sports Games in China. 2011 International Conference on Future Computer Science and Education, 384–386. [CrossRef]
APA
Gürgan, A., & Şevgin, Ö. (2024). Effect of Ergonomic Training and Exercise in Esports Players: A Randomized Controlled Trial. International Journal of Disabilities Sports and Health Sciences, 7(4), 867-876. https://doi.org/10.33438/ijdshs.1481857
AMA
1.Gürgan A, Şevgin Ö. Effect of Ergonomic Training and Exercise in Esports Players: A Randomized Controlled Trial. International Journal of Disabilities Sports &Health Sciences. 2024;7(4):867-876. doi:10.33438/ijdshs.1481857
Chicago
Gürgan, Atakan, and Ömer Şevgin. 2024. “Effect of Ergonomic Training and Exercise in Esports Players: A Randomized Controlled Trial”. International Journal of Disabilities Sports and Health Sciences 7 (4): 867-76. https://doi.org/10.33438/ijdshs.1481857.
EndNote
Gürgan A, Şevgin Ö (July 1, 2024) Effect of Ergonomic Training and Exercise in Esports Players: A Randomized Controlled Trial. International Journal of Disabilities Sports and Health Sciences 7 4 867–876.
IEEE
[1]A. Gürgan and Ö. Şevgin, “Effect of Ergonomic Training and Exercise in Esports Players: A Randomized Controlled Trial”, International Journal of Disabilities Sports &Health Sciences, vol. 7, no. 4, pp. 867–876, July 2024, doi: 10.33438/ijdshs.1481857.
ISNAD
Gürgan, Atakan - Şevgin, Ömer. “Effect of Ergonomic Training and Exercise in Esports Players: A Randomized Controlled Trial”. International Journal of Disabilities Sports and Health Sciences 7/4 (July 1, 2024): 867-876. https://doi.org/10.33438/ijdshs.1481857.
JAMA
1.Gürgan A, Şevgin Ö. Effect of Ergonomic Training and Exercise in Esports Players: A Randomized Controlled Trial. International Journal of Disabilities Sports &Health Sciences. 2024;7:867–876.
MLA
Gürgan, Atakan, and Ömer Şevgin. “Effect of Ergonomic Training and Exercise in Esports Players: A Randomized Controlled Trial”. International Journal of Disabilities Sports and Health Sciences, vol. 7, no. 4, July 2024, pp. 867-76, doi:10.33438/ijdshs.1481857.
Vancouver
1.Atakan Gürgan, Ömer Şevgin. Effect of Ergonomic Training and Exercise in Esports Players: A Randomized Controlled Trial. International Journal of Disabilities Sports &Health Sciences. 2024 Jul. 1;7(4):867-76. doi:10.33438/ijdshs.1481857