Forthcoming

Comparison and effects of coordination based circuit training and small side games on agility and dynamic balance in healthy students aged 15-18 years

Authors

DOI:

https://doi.org/10.15561/26649837.2026.0507

Keywords:

circuit training, small side games, agility, dynamic balance, physical education

Abstract

Background and Study Aim. Agility and dynamic balance are essential motor skills that support movement efficiency, postural control, and active participation in physical education learning for adolescents. Coordination-based circuit training provides structured and repetitive multidirectional movement stimuli, while small-sided games (SSG) present more contextual movement demands through spatial orientation, changes of direction, and rapid decision-making. However, the comparative effects of these two approaches on agility and dynamic balance in healthy, non-athlete students warrant further examination. This study aimed to analyze and compare the effects of coordination-based circuit training and SSG on agility and dynamic balance in healthy students aged 15–18 years, and to determine whether these intervention effects differ by gender. Materials and Methods. This study used a pretest-posttest controlled trial involving 84 healthy students from four high schools in Surakarta City, Indonesia. The participants comprised 42 male and 42 female students who were stratified by school of origin and gender and then randomly allocated in a 1:1:1 ratio to the circuit training, small-sided games, and control groups. Each group included 28 students (14 male and 14 female). Both intervention groups participated in a six-week program comprising 18 sessions, conducted three times per week for 60 minutes per session, with progressive increases in training volume and task complexity. The control group continued to participate in regular school physical activity without receiving either structured coordination intervention. Agility was measured using the Illinois Agility Test, while dynamic balance was measured using the three-way Star Excursion Balance Test composite score. Data were analyzed using a 3 × 2 factorial MANCOVA with group and gender as fixed factors and pretest scores as covariates. Results. Group had a significant effect on the combined posttest scores of agility and dynamic balance after controlling for baseline scores, F = 290.969, p < 0.001, partial η² = 0.886. Gender did not show a significant main multivariate effect, F = 0.141, p = 0.869, partial η² = 0.004, whereas the group × gender interaction was significant, F = 23.329, p < 0.001, partial η² = 0.384. The group effect was also significant for posttest agility, F = 219.112, p < 0.001, partial η² = 0.852, and dynamic balance, F = 1510.249, p < 0.001, partial η² = 0.975. Pairwise comparisons showed that both circuit training and SSG produced significantly better agility outcomes than the control condition in male and female students (all p < 0.001), with no significant difference between circuit training and SSG in males (p = 0.371) or females (p = 1.000). For dynamic balance, circuit training produced significantly higher adjusted scores than SSG in both males and females (both p < 0.001), while both interventions also significantly outperformed the control condition. Conclusions. Coordination-based circuit training and small-sided games produced significantly better agility and dynamic balance outcomes than the control condition in healthy, non-athlete adolescents. Both interventions were similarly effective for agility, with no significant difference between them within either gender. In contrast, circuit training produced significantly more favorable dynamic balance outcomes than SSG in both male and female students. The significant group × gender interaction indicated that the effects of the training methods varied according to gender. Circuit training may therefore be prioritized when dynamic balance is the primary objective, whereas either circuit training or SSG may be used to improve agility in school-based physical education. Future research should involve larger multicenter samples, longer intervention periods, post-program monitoring, and tracking of physical activity outside the study.

Downloads

Download data is not yet available.

Author Biographies

Agus Mukholid, Universitas Sebelas Maret

agusmukholid@staff.uns.ac.id; Physical Education, Health and Recreation of Study Program, Faculty of Sportt; Surakarta, Indonesia.  

Andri Arif Kustiawan, Universitas PGRI Yogyakarta

andriarifkustiawan@upy.ac.id; Sport Science of Study Program, Faculty of Science and Technology; Yogyakarta, Indonesia.  

Trisnar Adi Prabowo, Universitas Muhammadiyah Brebes

trisnar.prabowo@umbs.ac.id; Physical Education of Study Program, Faculty of Social Sciences, Law, and Education; Brebes, Indonesia.  

References

Burton AM, Cowburn I, Thompson F, Eisenmann JC, Nicholson B, Till K. Associations Between Motor Competence and Physical Activity, Physical Fitness and Psychosocial Characteristics in Adolescents: A Systematic Review and Meta-analysis. Sports Medicine, 2023;53(11): 2191–2256. https://doi.org/10.1007/s40279-023-01886-1

Yin X, Zhang D, Shen Y, Wang Y, Wang Z, Liu Y. Effectiveness of school-based interventions on fundamental movement skills in children: a systematic review and meta-analysis. BMC Public Health, 2025;25(1): 1522. https://doi.org/10.1186/s12889-025-22696-2

Zhu F, He Z, Zhu G, Guan M, Yang S, Liu J, et al. The effect of school-based functional training for physical fitness and postural health among children: a school-based cluster intervention trial. Scientific Reports, 2025;16(1): 1535. https://doi.org/10.1038/s41598-025-31557-2

Zi Y, de Geus EJC. Reviewing the association between motor competence and physical activity from a behavioral genetic perspective. Frontiers in Psychology, 2025;16: 1480631. https://doi.org/10.3389/fpsyg.2025.1480631

Tang FL, Wang T. The Relationship between Fundamental Movement Skills and Physical Activity in Children and Adolescents: A Systematic Review. Journal of Advances in Sports and Physical Education, 2023;8(03): 20–27. https://doi.org/10.36348/jaspe.2023.v06i03.001

Santoso NP, Subagyo, Santoso N, Prabowo TA, Yulianto WD. Assessing the Effect of Traditional Games on Manipulative Movements in Elementary School Students Based on Gender. Physical Education Theory and Methodology, 2024;24(3): 442–448. https://doi.org/10.17309/tmfv.2024.3.13

Saini A, Dubey BK, Vishwakarma R. Ascertaining the Effectiveness of Coordination Training Interventions in Enhancing Sports Performance: A Systematic Review and Meta-analysis. Physical Education Theory and Methodology, 2025;25(1): 183–190. https://doi.org/10.17309/tmfv.2025.1.22

Neag I, Mihaila I, Fleancu LJ, Acsinte A, Popescu CD, Stancu M, et al. Effectiveness of small-sided games on change of direction speed in youth soccer players: a systematic review and meta-analysis. Human Movement, 2024;25(4): 53–67. https://doi.org/10.5114/hm/195914

Mulya G, Nevitaningrum N, Agustryani R, Soraya N, Prabowo TA. Effects of technical drill and plyometric training on shot accuracy in tennis athletes aged 16–19 with different agility levels. Pedagogy of Physical Culture and Sports, 2025;29(5): 444–453. https://doi.org/10.15561/26649837.2025.0506

Divandari N, Bird M, Vakili M, Jaberzadeh S. The association between dynamic balance and executive function: Which dynamic balance test has the strongest association with executive function? A systematic review and meta-analysis. Current Neurology and Neuroscience Reports, 2024;24(6): 151–161. https://doi.org/10.1007/s11910-024-01340-3

S W, T T, F F, et al. Innovation, Validity, and Reliability of Modified Dynamic Balance Test for Karate Kata Category. Sport Mont, 2024;22(3): 25–30. https://doi.org/10.26773/smj.241004

Wang Z, Chen N, Cao S, Gao L, Geok SK, Liu J. The effects of balance training on physical fitness and skill-related performance in basketball players: a systematic review. BMC Sports Science, Medicine and Rehabilitation, 2025;17(1): 108. https://doi.org/10.1186/s13102-025-01164-9

Mitrousis I, Bourdas DI, Kounalakis S, Bekris E, Mitrotasios M, Kostopoulos Ν, et al. The Effect of a Balance Training Program on the Balance and Technical Skills of Adolescent Soccer Players. Journal of Sports Science and Medicine, 2023: 645–657. https://doi.org/10.52082/jssm.2023.645

Widodo H, Tomoliyus, Alim A, Ansori MK. Effects of circuit training method on reactive agility and endurance in table tennis players. Pedagogy of Physical Culture and Sports, 2024;28(4): 249–255. https://doi.org/10.15561/26649837.2024.0401

Wang R, Anek A. The Effect of Circuit Strength Training on the Muscle Strength, Speed, and Agility in Chinese Domestic Futsal Athletes. Interdisciplinary Academic and Research Journal, 2025;5(4): 1081–1094. https://doi.org/10.60027/iarj.2025.287811

Wan KW, Dai ZH, Wong PS, Ho RST, Tam BT. Comparing the Effects of Integrative Neuromuscular Training and Traditional Physical Fitness Training on Physical Performance Outcomes in Young Athletes: A Systematic Review and Meta-Analysis. Sports Medicine - Open, 2025;11(1): 15. https://doi.org/10.1186/s40798-025-00811-2

Syahrul Ghazi Parasutama, Dede Rohmat Nurjaya, Yudi Nurcahya. The Effect of Small Side Games Training with Different Field Sizes on Improving Dribbling Skills in 15-Year-Old Football Players. Journal of Physical Education Health and Sport, 2025;12(2). https://doi.org/10.15294/jpehs.v12i2.39824

Li T, Xu Q, Sarmento H, Zhao Y, Silva RM, Clemente FM. Effects of small-sided games training programs on physiological and physical adaptations of youth basketball players: A systematic review. Science Progress, 2024;107(1): 00368504241231657. https://doi.org/10.1177/00368504241231657

Zheng B, Xu Q, Zhang J. Combining HIIT with Small-Sided Soccer Games Enhances Cardiometabolic and Physical Fitness More Than Each Alone in Overweight Youth: A Randomized Controlled Study. Journal of Sports Science and Medicine, 2025: 104–115. https://doi.org/10.52082/jssm.2025.104

Rahmoune MA, Selmi O, Bouali S, Bouassida A, Alexe DI, Aldhahi MI, et al. Effects of small-sided games and dribbling circuit training on physical and technical skills in youth soccer players. Scientific Reports, 2025;16(1): 1731. https://doi.org/10.1038/s41598-025-31382-7

Hachana Y, Chaabène H, Nabli MA, Attia A, Moualhi J, Farhat N, et al. Test-Retest Reliability, Criterion-Related Validity, and Minimal Detectable Change of the Illinois Agility Test in Male Team Sport Athletes. Journal of Strength and Conditioning Research, 2013;27(10): 2752–2759. https://doi.org/10.1519/JSC.0b013e3182890ac3

Ilham I, Safitri M, Komaini A, Ihsan N, Orhan BE, Geantă VA. Validity and reliability of the Illinois Agility Test (IAT) for assessing agility in Pencak Silat athletes. Retos, 2025;66: 304–312. https://doi.org/10.47197/retos.v66.111323

Kurniasandi I, Imanudin I, Umaran U. Analysis of physical condition quality in high school students’ futsal extracurricular activities. Gladi : Jurnal Ilmu Keolahragaan, 2025;16(03): 362–372. https://doi.org/10.21009/GJIK.163.05

Sari FN, Sumartiningsih S. Influence of peak height velocity on agility and sprint performance in young pencak silat athletes : a cross -sectional study. Journal of Physical Education and Sports, 2025;14(4): 92–108. https://doi.org/10.15294/jpes.v14i4.29172

Prembanyu PH, Wiyanto A, Setiyawan S. Impact of five-cone and ladder drill training on agility among U15 football athletes. Physical Education and Sports: Studies and Research, 2025;4(3): 266–274. https://doi.org/10.56003/pessr.v4i3.633

Powden CJ, Dodds TK, Gabriel EH. The reliability of the star excursion balance test and lower quarter y-balance test in healthy adults: a systematic review. International Journal of Sports Physical Therapy, 2019;14(5): 683–694. https://doi.org/10.26603/ijspt20190683

Picot B, Terrier R, Forestier N, Fourchet F, McKeon PO. The Star Excursion Balance Test: An Update Review and Practical Guidelines. International Journal of Athletic Therapy and Training, 2021;26(6): 285–293. https://doi.org/10.1123/ijatt.2020-0106

Ozmen T, Aydogmus M. Effect of core strength training on dynamic balance and agility in adolescent badminton players. Journal of Bodywork and Movement Therapies, 2016;20(3): 565–570. https://doi.org/10.1016/j.jbmt.2015.12.006

Krajňák J. Structure and performance-related changes in puberty in a group of ice hockey players. Studia Sportiva, 2020;14(1): 68–75. https://doi.org/10.5817/StS2020-1-8

Feng W, Wang F, Han Y, Li G. RETRACTED: The effect of 12-week core strength training on dynamic balance, agility, and dribbling skill in adolescent basketball players. Heliyon, 2024;10(6): e27544. https://doi.org/10.1016/j.heliyon.2024.e27544

Kad P, Jeswani K. Effect of Dead Bug Exercises on Dynamic Balance and Agility Among Adolescent Badminton Players at the End of Four Weeks – An Experimental Study. International Journal of Health Sciences and Research, 2024;14(8): 140–147. https://doi.org/10.52403/ijhsr.20240819

Szilárd PB, Badics MC. Normális eloszlás vizsgálata: melyik tesztet alkalmazzuk a gyakorlatban?. Statisztikai Szemle, 2024;102(1): 5–37. https://doi.org/10.20311/stat2024.01.hu0005

Mohamad Puzi MHB, Choo LA. The effect of six weeks CoBAgi training on coordination, dynamic balance & agility of adolescent handball players. Pedagogy of Physical Culture and Sports, 2021;25(1): 31–38. https://doi.org/10.15561/26649837.2021.0105

Ilham I, Putra RA, Orhan BE, Nusri A, Zulaini Z, Kurniawan R, et al. The Effect of a Six-Week Intervention Using Small-Sided Games (SSG), Ladder Drill, and Dynamic Balance on Agility of Young Futsal Players. Physical Education Theory and Methodology, 2025;25(5): 1237–1247. https://doi.org/10.17309/tmfv.2025.5.23

Arslan E, Soylu Y, Clemente F, Hazir T, Kin Isler A, Kilit B. Short-term effects of on-field combined core strength and small-sided games training on physical performance in young soccer players. Biology of Sport, 2021;38(4): 609–616. https://doi.org/10.5114/biolsport.2021.102865

Wang P, Liu Y, Chen C. Effects of neuromuscular training on dynamic balance ability in athletes: A systematic review and meta-analysis. Heliyon, 2024;10(16): e35823. https://doi.org/10.1016/j.heliyon.2024.e35823

Shen X. The effect of 8-week combined balance and plyometric on the dynamic balance and agility of female adolescent taekwondo athletes. Medicine, 2024;103(10): e37359. https://doi.org/10.1097/MD.0000000000037359

Ramachandran AK, Singh U, Ramirez-Campillo R, Clemente FM, Afonso J, Granacher U. Effects of Plyometric Jump Training on Balance Performance in Healthy Participants: A Systematic Review With Meta-Analysis. Frontiers in Physiology, 2021;12: 730945. https://doi.org/10.3389/fphys.2021.730945

Hammami A, Randers MB, Kasmi S, Razgallah M, Tabka Z, Chamari K, et al. Effects of soccer training on health-related physical fitness measures in male adolescents. Journal of Sport and Health Science, 2018;7(2): 169–175. https://doi.org/10.1016/j.jshs.2017.10.009

Ebrahimi M, Changizi M. Impact of Age, Gender, and Body Composition on Balance, Coordination, and Agility in Children and Adolescents. International Journal of Sport Studies for Health, 2025;8(2): 27–34. https://doi.org/10.61838/kman.intjssh.8.2.4

Plisky P, Schwartkopf-Phifer K, Huebner B, Garner MB, Bullock G. Systematic Review and Meta-Analysis of the Y-Balance Test Lower Quarter: Reliability, Discriminant Validity, and Predictive Validity. International Journal of Sports Physical Therapy, 2021;16(5). https://doi.org/10.26603/001c.27634

Sole S, Ramírez-Campillo R, Andrade DC, Sanchez-Sanchez J. Plyometric jump training effects on the physical fitness of individual-sport athletes: a systematic review with meta-analysis. PeerJ, 2021;9: e11004. https://doi.org/10.7717/peerj.11004

Li QZ, Fang Q, Zhao XT, Peng W. Motor ability development by integrating small-sided games into physical education class. Frontiers in Psychology, 2024;15: 1259924. https://doi.org/10.3389/fpsyg.2024.1259924

Clemente FM. The enjoyment of small-sided games: a narrative review. Human Movement, 2025;26(1): 1–14. https://doi.org/10.5114/hm/197230

Downloads

Published: 2026-09-10

How to Cite

1.
Mukholid A, Kustiawan AA, Prabowo TA. Comparison and effects of coordination based circuit training and small side games on agility and dynamic balance in healthy students aged 15-18 years. Pedagogy of Physical Culture and Sports. 2026;30(5):498-512. https://doi.org/10.15561/26649837.2026.0507