Circuit training bosu ball: Effect on balance and accuracy of archery athletes
DOI:
https://doi.org/10.15561/26649837.2023.0307Keywords:
circuit training, bosu ball, balance, accuracyAbstract
Background and Study Aim. Balance is very decisive in producing good and correct basic archery techniques, resulting in good archery accuracy. This study aims to determine the effect of circuit training bosu ball on improving balance and accuracy in archery athletes. Material and Methods. This study was an experimental research design that involved 12 archery athletes at Bibis Archery Club Bantul Regency, aged between 14-17 years. The training program consisted of 18 circuit training sessions using a bosu ball. The archery accuracy test was used to assess the athletes' accuracy in sticking arrows to a target located 30 meters away. The balance test was conducted using the Stork Stand Test, which involved standing on one leg, on the dominant leg, for as long as possible. The statistical analysis used was a t-test, specifically paired sample test. Results. The pretest balance and archery accuracy scores of the 12 archery athletes at Bibis Archery Club Bantul Regency were recorded. The pretest balance score averaged 44.12 seconds, and the pretest archery accuracy score was 216.50. After 18 circuit training sessions with bosu ball, the posttest balance score increased to an average of 51.44 seconds, and the posttest archery accuracy score increased to an average of 282.83. Statistical analysis revealed that the improvement in balance and archery accuracy was significant, with a p-value of 0.000 <0.05, indicating that the training using bosu ball can effectively improve the balance and archery accuracy of young athletes. Conclusions. Overall, our findings suggest that circuit training with bosu ball significantly improves balance and archery accuracy in young athletes. Specifically, the participants demonstrated an average increase in their balance scores improvement in their archery accuracy following the training. These results highlight the potential benefits of incorporating bosu ball exercises in the training regimen of archery athletes.References
Lo Presti D, Romano C, Massaroni C, D’Abbraccio J, Massari L, Caponero MA, et al. Cardio-respiratory monitoring in archery using a smart textile based on flexible fiber Bragg grating sensors. Sensors, 2019;19(16):3581. https://doi.org/10.3390/s19163581
Simsek D, Cerrah AO, Ertan H, Soylu AR. A comparison of the ground reaction forces of archers with different levels of expertise during the arrow shooting. Sci Sports. 2019;34(2):e137–45. https://doi.org/10.1016/j.scispo.2018.08.008
Sarro KJ, Viana TDC, De Barros RML. Relationship between bow stability and postural control in recurve archery. Eur J Sport Sci. 2021;21(4):515–20. https://doi.org/10.1080/17461391.2020.1754471
Ortiz J, Ando M, Miyazaki T. Numerical simulation of wind drift of arrows on the Olympic venue for Tokyo 2020. Athens J Sport. 2020;7(1):1–20. https://doi.org/10.30958/ajspo.7-1-1
Tan SL, Koh KT, Kokkonen M. The perception of elite athletes’ guided self-reflection and performance in archery. Reflective Pract. 2016;17(2):207–20. https://doi.org/10.1080/14623943.2016.1146582
Kim D-K. The effects of the upright body type exercise program on body balance and record of archers. Korean J Sport Biomech. 2018;28(1):9–18. https://doi.org/10.5103/KJSB.2017.28.1.9
Debnath S, Debnath S. Performance evaluation by image processing techniques in archery–a case study. Int J New Technol Sci Eng. 2016;3(1):1–6.
Patil A, Koley S. Correlations of static balance and star excursion balance test with selected anthropometric variables in inter-university archery players. Int J Heal Sci Res. 2019;9(2):90–5. https://doi.org/10.52403/ijhsr
Ziebell B, Feister J, Bosak A, Lowell R, Phillips M, Nelson H, et al. The Relationship Between BMI, Lean Mass, and Body Fat Percentage with Balance in Collegiate Archers. Medicine & Science in Sports & Exercise, 2019;51(6S): 914–914. https://doi.org/10.1249/01.mss.0000563240.55805.37
Kümmel J, Kramer A, Giboin L-S, Gruber M. Specificity of balance training in healthy individuals: a systematic review and meta-analysis. Sport Med. 2016;46:1261–71. https://doi.org/10.1007/s40279-016-0515-z
Turgut M, Akbulut T, İmamoğlu O, Çınar V. The effect of 3 month cardio bosu exercises on some motoric, physical and physiological parameters in sedentary women. Sp Soc Int J Ph Ed Sp. 2018;18(2):48–52. https://doi.org/10.18662/rrem/169
Saeterbakken AH, Andersen V, Jansson J, Kvellestad AC, Fimland MS. Effects of BOSU ball (s) during sit-ups with body weight and added resistance on core muscle activation. J Strength Cond Res. 2014;28(12):3515–22. https://doi.org/10.1519/JSC.0000000000000565
Sawant RA, Chotai K, Patil S, Rayjade A. Effectiveness of bosu ball exercises versus thera band exercises on core stabilization and balance performance. Indian J Forensic Med Toxicol. 2020;14(2):200–6. https://doi.org/10.37506/ijfmt.v14i2.2788
Kalra S, Pal S, Pawaria S, Yadav J. Comparative study of wobble board and bosu ball along with strength training on lower limb strength, dynamic balance, agility and functional performance of runners with lateral ankle instability. J Clin Diagnostic Res. 2021;15(5). https://doi.org/10.7860/JCDR/2021/46588.14820
Loh WP, Chong YY. Classifying the archery performance with conditional effects on angular and linear shooting techniques. J Telecommun Electron Comput Eng. 2018;10(3–2):95–9.
Ndayisenga J. Circuit training intervention for adaptive physical activity to improve cardiorespiratory fitness, leg muscle strength static and balance of intellectually disabled children. Sport Mont. 2019;17(3):97–100. https://doi.org/10.26773/smj.191019
Lubetzky A V, Price R, Ciol MA, Kelly VE, McCoy SW. Relationship of multiscale entropy to task difficulty and sway velocity in healthy young adults. Somatosens Mot Res. 2015;32(4):211–8. https://doi.org/10.3109/08990220.2015.1074565
Rusanov R, Vostroknutov L, Ke S, Prusik K, Golenkova J. Physical fitness of young Greco-Roman athletes under the restrictions of the COVID-19 pandemic. Pedagogy of Health. 2022;1(2):48-53. https://doi.org/10.15561/health.2022.0203
Lyuchkova E, Nesen O, Bartik P, Skrobecki J. Increasing the level of coordination abilities of young taekwondo athletes aged 13-14 under martial law. Pedagogy of Health. 2022;1(2):59-64. https://doi.org/10.15561/health.2022.0205
Zemkova E, Jelen M, Radman I, Svilar L, Hamar D. The effect of stable and unstable lifting conditions on muscle power and fatigue rate during resistance exercises. Med Sport. 2017;70:36–49. https://doi.org/10.23736/S0025-7826.17.03026-5
Saeterbakken AH, Chaudhari A, van den Tillaar R, Andersen V. The effects of performing integrated compared to isolated core exercises. PLoS One. 2019;14(2):e0212216. https://doi.org/10.1371/journal.pone.0212216
Gidu DV, Badau D, Stoica M, Aron A, Focan G, Monea D, et al. The effects of proprioceptive training on balance, strength, agility and dribbling in adolescent male soccer players. Int J Environ Res Public Health. 2022;19(4):2028. https://doi.org/10.3390/ijerph19042028
Saikhanzul J, Jeong B-C, Yoo K-T. The Effect of ankle strengthening exercises using a bosu® ball on the hallux valgus angle, rear foot angle, balance, and pain of hallux valgus patients in their 20s. Korean Soc Phys Med. 2022;17(3):69–77. https://doi.org/10.13066/kspm.2022.17.3.69
Abd-Elmonem AM, Elhady HSA. Effect of rebound exercises on balance in children with spastic diplegia. Int J Ther Rehabil. 2018;25(9):467–74. https://doi.org/10.12968/ijtr.2018.25.9.467
Elfateh A. Effects of ten weeks of instability resistance training (bosu ball) on muscular balance and the learning level of fencing basics. Ovidius Univ Ann Ser Phys Educ Sport Mov Heal. 2016;16.
Nugraha PD, Soegiyanto S, Kristiyanto A, Azam M. The effect of ankle strengthening exercise on balance in youth basketball players. Pedagog Phys Cult Sport. 2022;26(1):57–67. https://doi.org/10.15561/26649837.2022.01.07
Iskandar FA, Rismayadi A. Penerapan latihan media bosu ball terhadap peningkatan keseimbangan atlet bolabasket [Application of bosu ball media exercises to improve the balance of basketball athletes]. J Kepelatihan Olahraga. 2019;11(1):51–8. (In Indonesian). https://doi.org/10.17509/jko-upi.v11i1.16826
Cuğ M, Duncan A, Wikstrom E. Comparative effects of different balance-training–progression styles on postural control and ankle force production: a randomized controlled trial. J Athl Train. 2016;51(2):101. https://doi.org/10.4085/1062-6050-51.2.08
Ratamess NA, Rosenberg JG, Klei S, Dougherty BM, Kang J, Smith CR, et al. Comparison of the acute metabolic responses to traditional resistance, body-weight, and battling rope exercises. J Strength Cond Res. 2015;29(1):47–57. https://doi.org/10.1519/JSC.0000000000000584
Lengkana AS, Rahman AA, Alif MN, Mulya G, Priana A, Hermawan DB. Static and dynamic balance learning in primary school students. Int J Hum Mov Sport Sci. 2020;8(6):469–76. https://doi.org/10.13189/saj.2020.080620
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