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The Effect of Plyometric Exercises Using the Cluster Set Method on Certain Physical and Physiological Parameters in Female Handball Players

Yıl 2024, Cilt: 26 Sayı: 3, 476 - 487, 31.12.2024
https://doi.org/10.15314/tsed.1522729

Öz

The effects of plyometric training on some physical and physiological parameters at the end of 6 weeks (3 days a week) by applying the traditional set method and cluster set method in plyometric training of female handball players playing in the 2nd League was examined in the aim of this study. A total of 23 female athletes aged 12-15 years, 12 in the traditional set group and 11 in the cluster set group, participated in the study. Within the scope of the thesis, the traditional set group's physical characteristics (age, height, weight), vertical jump, stopping long jump, T-test agility test, reactive agility test, 10 meters-30 meters speed test, PRAST test, leg force, back force was taken as pre-test and post-test. SPPS 22.0 program was used to analyze the data. The confidence interval for all statistical actions performed is set to p<0,05. Whether the descriptive statistics found at the end of the study were normally distributed or not was determined by Shapiro-Wilk's test. To determine the difference between the pre-test and post-test results of the groups for variables with normal distribution, the paired T-test and Wilcoxon test for those who did not were applied. Mann Whitney U test was applied to determine the normal distribution of the differences between groups. The difference between the pretest and post-test was taken to evaluate training data. As a result, the researched parameters showed a more positive effect on Bk and Prast Fatigue performances than the cluster and traditional set methods. Also, the cluster set method has been thought to be effective for developing athletes.

Kaynakça

  • 1. Ara, I., Vicente-Rodriguez, G., Jimenez-Ramirez, J., Dorado, C., Serrano-Sanchez, J. A., & Calbet, J. A. L. (2004). Regular participation in sports is associated with enhanced physical fitness and lower fat mass in prepubertal boys. International journal of obesity, 28(12), 1585-1593.
  • 2. Ateş, M., & Ateşoğlu, U. (2007). The effect of plyometric training on upper and lower extremity strength parameters in 16-18-year-old male football players. Spormetre Journal of Physical Education and Sports Sciences, 5(1), 21-28.
  • 3. Bağırgan, T. (1990). Training in handball. Bağırgan Publishing
  • 4. Bavlı, Ö. (2012). Investigation of the effects of plyometric exercises combined with basketball training on some biomotoric characteristics. Pamukkale Journal of Sport Sciences, 3(2).
  • 5. Bompa, T. O. (2017). Periodization: Theory and methodology of training (T. Bağırgan, Trans.). 5th ed. Ankara: Spor Yayınevi ve Kitabevi.
  • 6. Cardinale, M. (2001). Handball performance: physiological considerations and practical approach for training metabolic aspects. Retrieved, 17(3), 2001.
  • 7. Diallo, O., Dore, E., Duche, P., & Van Praagh, E. (2001). Effects of plyometric training followed by a reduced training programme on physical performance in prepubescent soccer players. Journal of sports medicine and physical fitness, 41(3), 342.
  • 8. Dönmez, O. (2019). The effects of plyometric training on jumping and agility parameters in wushu athletes (Master's thesis). Manisa Celal Bayar University, Institute of Health Sciences, Manisa.
  • 9. Duyul, M. (2005). Comparison of the effects of some motoric and anthropometric characteristics on success in university teams of handball, volleyball, and football (Master's thesis). Ondokuz Mayıs University, Institute of Health Sciences, Samsun.
  • 10. Eduardo Saez V, Kellis, E., Kraemer, W. J., & Izquierdo, M. (2009). Determining variables of plyometric training for improving vertical jump height performance: a meta-analysis. The Journal of Strength & Conditioning Research, 23(2), 495-506.
  • 11. Erdem, K., & Yazar, M. (2019). The effects of futsal training on speed, agility, and anaerobic endurance in male athletes aged 16-17. Journal of Sports Education, 3(3), 63-70.
  • 12. Erol, E. (1992). An experimental study on the effects of explosive strength training on the performance of young basketball players aged 16-18. Master's thesis, Gazi University Institute of Health Sciences, Ankara.
  • 13. Erzeybek, M. S., Yüksel, O., Kaya, F., & Önen, M. E. (2022). The effect of eight week combined training practices on anaerobic power and some motor skills of korfball and basketball players. Int. J. Life Sci. Pharma Res, 12(1), L11-18.
  • 14. Gençay, E. (2014). The effects of two different 8-week plyometric training programs on anaerobic performance and vertical jump in amateur athletes. Master's thesis, Dumlupınar University Institute of Health Sciences, Kütahya.
  • 15. Güzel, Ö. (2020). Investigation of the effects of an 8-week selected plyometric training program on vertical jump and agility in female volleyball players. Master's thesis, Giresun University Institute of Health Sciences, Giresun.
  • 16. Haff, G. G., Hobbs, R. T., Haff, E. E., Sands, W. A., Pierce, K. C., & Stone, M. H. (2008). Cluster training: A novel method for introducing training program variation. Strength & Conditioning Journal, 30(1), 67-76.
  • 17. Hansen, K. T., Cronin, J. B., Pickering, S. L., & Newton, M. J. (2011). Does cluster loading enhance lower body power development in preseason preparation of elite rugby union players?. The Journal of Strength & Conditioning Research, 25(8), 2118-2126.
  • 18. Hoffman, J. (2002). Exercise-induced Asthma. Physiological aspects of sport training and performance. Champaign: Human Kinetics, 283-289.
  • 19. Iacono, A. D., Eliakim, A., & Meckel, Y. (2015). Improving fitness of elite handball players: small-sided games vs. high-intensity intermittent training. The Journal of Strength & Conditioning Research, 29(3), 835-843.
  • 20. Kurban, M., & Kaya, Y. (2017). Investigation of the effects of basic football technical training on some motor and technical skill developments of children aged 10-13. Journal of Sports and Performance Research, 8(3), 210-221.
  • 21. Lawton, T. W., Cronin, J. B., & Lindsell, R. P. (2006). Effect of interrepetition rest intervals on weight training repetition power output. The Journal of Strength & Conditioning Research, 20(1), 172-176.
  • 22. Löklüoğlu, B. (2018). Examination of anaerobic performance in athletes in different sports branches with laboratory and field tests. Master's Thesis, Akdeniz University, Institute of Health Sciences, Antalya.
  • 23. Matlák, J., Racz, L., & Tihanyi, J. (2017). Assessment of repeated reactive agility performance in amateur soccer players. Science & Sports, 32(4), 235-238.
  • 24. McArdle, W. D., Katch, F. I., & Katch, V. L. (2010). Exercise physiology: nutrition, energy, and human performance. Lippincott Williams & Wilkins.
  • 25. McLeod, T. C. V., Armstrong, T., Miller, M., & Sauers, J. L. (2009). Balance improvements in female high school basketball players after a 6-week neuromuscular-training program. Journal of sport rehabilitation, 18(4), 465-481.
  • 26. Miller, M. G., Herniman, J. J., Ricard, M. D., Cheatham, C. C., & Michael, T. J. (2006). The effects of a 6-week plyometric training program on agility. Journal of sports science & medicine, 5(3), 459.
  • 27. Morales-Artacho, A. J., Padial, P., García-Ramos, A., Pérez-Castilla, A., & Feriche, B. (2018). Influence of a cluster set configuration on the adaptations to short-term power training. The Journal of Strength & Conditioning Research, 32(4), 930-937.
  • 28. Moreno, S. (2012). Effect of cluster sets on plyometric jump power. California State University, Fullerton.
  • 29. Obert, P., Mandigout, M., Vinet, A., & Courteix, D. (2001). Effect of a 13-week aerobic training programme on the maximal power developed during a force-velocity test in prepubertal boys and girls. International Journal of Sports Medicine, 22(06), 442-446.
  • 30. Öner, S. (2021). The effects of plyometric and resistance training on some motor and performance parameters in tennis players. Master's Thesis, İnönü University, Institute of Health Sciences, Malatya.
  • 31. Özbek, A. (2000). Sports in Islam. In Ottoman Sports Symposium (pp. 252-259). May 26-27, Konya.
  • 32. Paasuke, M., Ereline, J., & Gapeyeva, H. (2001). Knee extension strength and vertical jumping performance in nordic combined athletes. Journal of sports medicine and physical fitness, 41(3), 354.
  • 33. Samur, D. (2002). The Effects of Plyometric Training on Physical, Physiological Parameters, Jumping Power, and Performance in Male Volleyball Players. Master's Thesis, Cumhuriyet University, Institute of Health Sciences, Sivas.
  • 34. Sevim, Y. (2002). Training Information (6th ed.). Nobel Publishing, Ankara.
  • 35. Topal, D. (2022). Comparison of the Effects of Two Different Resistance Training on Basketball-Specific Performance Parameters (Doctoral dissertation). Akdeniz University Health Sciences Institute, Antalya.
  • 36. Turgut, C. (2017). The Effect of 8-Week Plyometric Training on Various Physical and Physiological Parameters of Male Handball Student Athletes in Secondary Education (Master's thesis). Bartın University Health Sciences Institute, Bartın.
  • 37. Ürer, S., & Kılınç, F. (2014). The Effects of Plyometric Training Applied to the Upper Extremities on Vertical Jump Performance and Blocked Shot Accuracy in Male Handball Players Aged 15-17. İnönü University Journal of Physical Education and Sports Sciences, 1(2), 16-38.
  • 38. Yarayan, M. T. (2019). The Effect of an Eight-Week Plyometric Training Program on Vertical Jump, Agility, Speed, and Strength Parameters in 13-14-Year-Old Football Players. Master's Thesis, Ankara University Institute of Health Sciences, Ankara.

Kadın Hentbolcularda Cluster Set Yöntemi ile Uygulanan Pliometrik Çalışmaların Bazı Fiziksel ve Fizyolojik Parametreler Üzerine Etkisi

Yıl 2024, Cilt: 26 Sayı: 3, 476 - 487, 31.12.2024
https://doi.org/10.15314/tsed.1522729

Öz

Bu çalışmanın amacı 2. Ligde oynayan kadın hentbolcuların pliometrik antrenmanlarında geleneksel set yöntemi (GSY) ve cluster set yöntemi (CSY) uygulanarak 6 hafta (haftada 3 gün) sonunda pliometrik antrenmanların bazı fiziksel ve fizyolojik parametreler üzerine etkisi incelendi. Çalışmaya 12-15 yaşlarında 12 kişi geleneksel set grubu (GSG) ve 11 kişi cluster set grubu (CSG) olmak üzere toplam 23 kadın sporcu katıldı. Tez kapsamında, GSG ve CSG fiziksel özellikleri (yaş, boy, kilo), dikey sıçrama (DS), durarak uzun atlama (DUA), T-Test çeviklik testi (TÇT), reaktif çeviklik testi (RÇT), 10m-30m sürat testi (ST), PRAST testi, bacak kuvveti (BK), sırt kuvveti (SK) ön test ve son test şeklinde ölçümleri alındı. Verilerin analizinde SPPS 22.0 programı kullanıldı. İstatistiksel işlemlerde güven aralığı p<0,05 kabul edildi. Çalışma sonucunda bulunan tanımlayıcı istatistiklerin normal dağılım olup olmadığı Shapiro Wilk’s testi ile anlaşıldı. Grupların ön test ve son test sonuçları arasındaki farklılığı belirlemek için normal dağılıma uygun değişkenlerde eşleştirilmiş t-testi, uymayanlarda ise Wilcoxon testi uygulandı. Gruplar arası farklılıkların normal dağılıma uygun değişkenler için Bağımsız örneklem t-testi, uygun olmayanlar için Mann Whitney U testi uygulandı. Antrenman verilerini değerlendirmek için ön test son test arasındaki fark alındı. Sonuç olarak incelenen parametreler CSY, GSY’ne göre BK ve PRAST-Yorgunluk performanslarında daha olumlu etki gösterdi. CSY’nin sporcuların gelişim seviyelerinde etkili bir yöntem olduğu düşünülmektedir.

Kaynakça

  • 1. Ara, I., Vicente-Rodriguez, G., Jimenez-Ramirez, J., Dorado, C., Serrano-Sanchez, J. A., & Calbet, J. A. L. (2004). Regular participation in sports is associated with enhanced physical fitness and lower fat mass in prepubertal boys. International journal of obesity, 28(12), 1585-1593.
  • 2. Ateş, M., & Ateşoğlu, U. (2007). The effect of plyometric training on upper and lower extremity strength parameters in 16-18-year-old male football players. Spormetre Journal of Physical Education and Sports Sciences, 5(1), 21-28.
  • 3. Bağırgan, T. (1990). Training in handball. Bağırgan Publishing
  • 4. Bavlı, Ö. (2012). Investigation of the effects of plyometric exercises combined with basketball training on some biomotoric characteristics. Pamukkale Journal of Sport Sciences, 3(2).
  • 5. Bompa, T. O. (2017). Periodization: Theory and methodology of training (T. Bağırgan, Trans.). 5th ed. Ankara: Spor Yayınevi ve Kitabevi.
  • 6. Cardinale, M. (2001). Handball performance: physiological considerations and practical approach for training metabolic aspects. Retrieved, 17(3), 2001.
  • 7. Diallo, O., Dore, E., Duche, P., & Van Praagh, E. (2001). Effects of plyometric training followed by a reduced training programme on physical performance in prepubescent soccer players. Journal of sports medicine and physical fitness, 41(3), 342.
  • 8. Dönmez, O. (2019). The effects of plyometric training on jumping and agility parameters in wushu athletes (Master's thesis). Manisa Celal Bayar University, Institute of Health Sciences, Manisa.
  • 9. Duyul, M. (2005). Comparison of the effects of some motoric and anthropometric characteristics on success in university teams of handball, volleyball, and football (Master's thesis). Ondokuz Mayıs University, Institute of Health Sciences, Samsun.
  • 10. Eduardo Saez V, Kellis, E., Kraemer, W. J., & Izquierdo, M. (2009). Determining variables of plyometric training for improving vertical jump height performance: a meta-analysis. The Journal of Strength & Conditioning Research, 23(2), 495-506.
  • 11. Erdem, K., & Yazar, M. (2019). The effects of futsal training on speed, agility, and anaerobic endurance in male athletes aged 16-17. Journal of Sports Education, 3(3), 63-70.
  • 12. Erol, E. (1992). An experimental study on the effects of explosive strength training on the performance of young basketball players aged 16-18. Master's thesis, Gazi University Institute of Health Sciences, Ankara.
  • 13. Erzeybek, M. S., Yüksel, O., Kaya, F., & Önen, M. E. (2022). The effect of eight week combined training practices on anaerobic power and some motor skills of korfball and basketball players. Int. J. Life Sci. Pharma Res, 12(1), L11-18.
  • 14. Gençay, E. (2014). The effects of two different 8-week plyometric training programs on anaerobic performance and vertical jump in amateur athletes. Master's thesis, Dumlupınar University Institute of Health Sciences, Kütahya.
  • 15. Güzel, Ö. (2020). Investigation of the effects of an 8-week selected plyometric training program on vertical jump and agility in female volleyball players. Master's thesis, Giresun University Institute of Health Sciences, Giresun.
  • 16. Haff, G. G., Hobbs, R. T., Haff, E. E., Sands, W. A., Pierce, K. C., & Stone, M. H. (2008). Cluster training: A novel method for introducing training program variation. Strength & Conditioning Journal, 30(1), 67-76.
  • 17. Hansen, K. T., Cronin, J. B., Pickering, S. L., & Newton, M. J. (2011). Does cluster loading enhance lower body power development in preseason preparation of elite rugby union players?. The Journal of Strength & Conditioning Research, 25(8), 2118-2126.
  • 18. Hoffman, J. (2002). Exercise-induced Asthma. Physiological aspects of sport training and performance. Champaign: Human Kinetics, 283-289.
  • 19. Iacono, A. D., Eliakim, A., & Meckel, Y. (2015). Improving fitness of elite handball players: small-sided games vs. high-intensity intermittent training. The Journal of Strength & Conditioning Research, 29(3), 835-843.
  • 20. Kurban, M., & Kaya, Y. (2017). Investigation of the effects of basic football technical training on some motor and technical skill developments of children aged 10-13. Journal of Sports and Performance Research, 8(3), 210-221.
  • 21. Lawton, T. W., Cronin, J. B., & Lindsell, R. P. (2006). Effect of interrepetition rest intervals on weight training repetition power output. The Journal of Strength & Conditioning Research, 20(1), 172-176.
  • 22. Löklüoğlu, B. (2018). Examination of anaerobic performance in athletes in different sports branches with laboratory and field tests. Master's Thesis, Akdeniz University, Institute of Health Sciences, Antalya.
  • 23. Matlák, J., Racz, L., & Tihanyi, J. (2017). Assessment of repeated reactive agility performance in amateur soccer players. Science & Sports, 32(4), 235-238.
  • 24. McArdle, W. D., Katch, F. I., & Katch, V. L. (2010). Exercise physiology: nutrition, energy, and human performance. Lippincott Williams & Wilkins.
  • 25. McLeod, T. C. V., Armstrong, T., Miller, M., & Sauers, J. L. (2009). Balance improvements in female high school basketball players after a 6-week neuromuscular-training program. Journal of sport rehabilitation, 18(4), 465-481.
  • 26. Miller, M. G., Herniman, J. J., Ricard, M. D., Cheatham, C. C., & Michael, T. J. (2006). The effects of a 6-week plyometric training program on agility. Journal of sports science & medicine, 5(3), 459.
  • 27. Morales-Artacho, A. J., Padial, P., García-Ramos, A., Pérez-Castilla, A., & Feriche, B. (2018). Influence of a cluster set configuration on the adaptations to short-term power training. The Journal of Strength & Conditioning Research, 32(4), 930-937.
  • 28. Moreno, S. (2012). Effect of cluster sets on plyometric jump power. California State University, Fullerton.
  • 29. Obert, P., Mandigout, M., Vinet, A., & Courteix, D. (2001). Effect of a 13-week aerobic training programme on the maximal power developed during a force-velocity test in prepubertal boys and girls. International Journal of Sports Medicine, 22(06), 442-446.
  • 30. Öner, S. (2021). The effects of plyometric and resistance training on some motor and performance parameters in tennis players. Master's Thesis, İnönü University, Institute of Health Sciences, Malatya.
  • 31. Özbek, A. (2000). Sports in Islam. In Ottoman Sports Symposium (pp. 252-259). May 26-27, Konya.
  • 32. Paasuke, M., Ereline, J., & Gapeyeva, H. (2001). Knee extension strength and vertical jumping performance in nordic combined athletes. Journal of sports medicine and physical fitness, 41(3), 354.
  • 33. Samur, D. (2002). The Effects of Plyometric Training on Physical, Physiological Parameters, Jumping Power, and Performance in Male Volleyball Players. Master's Thesis, Cumhuriyet University, Institute of Health Sciences, Sivas.
  • 34. Sevim, Y. (2002). Training Information (6th ed.). Nobel Publishing, Ankara.
  • 35. Topal, D. (2022). Comparison of the Effects of Two Different Resistance Training on Basketball-Specific Performance Parameters (Doctoral dissertation). Akdeniz University Health Sciences Institute, Antalya.
  • 36. Turgut, C. (2017). The Effect of 8-Week Plyometric Training on Various Physical and Physiological Parameters of Male Handball Student Athletes in Secondary Education (Master's thesis). Bartın University Health Sciences Institute, Bartın.
  • 37. Ürer, S., & Kılınç, F. (2014). The Effects of Plyometric Training Applied to the Upper Extremities on Vertical Jump Performance and Blocked Shot Accuracy in Male Handball Players Aged 15-17. İnönü University Journal of Physical Education and Sports Sciences, 1(2), 16-38.
  • 38. Yarayan, M. T. (2019). The Effect of an Eight-Week Plyometric Training Program on Vertical Jump, Agility, Speed, and Strength Parameters in 13-14-Year-Old Football Players. Master's Thesis, Ankara University Institute of Health Sciences, Ankara.
Toplam 38 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Antrenman
Bölüm Makeleler
Yazarlar

Sinan Buyurukcu 0009-0005-6103-9843

Mustafa Kerem 0000-0001-7861-2339

Yayımlanma Tarihi 31 Aralık 2024
Gönderilme Tarihi 26 Temmuz 2024
Kabul Tarihi 28 Kasım 2024
Yayımlandığı Sayı Yıl 2024 Cilt: 26 Sayı: 3

Kaynak Göster

APA Buyurukcu, S., & Kerem, M. (2024). The Effect of Plyometric Exercises Using the Cluster Set Method on Certain Physical and Physiological Parameters in Female Handball Players. Turkish Journal of Sport and Exercise, 26(3), 476-487. https://doi.org/10.15314/tsed.1522729
AMA Buyurukcu S, Kerem M. The Effect of Plyometric Exercises Using the Cluster Set Method on Certain Physical and Physiological Parameters in Female Handball Players. Turk J Sport Exe. Aralık 2024;26(3):476-487. doi:10.15314/tsed.1522729
Chicago Buyurukcu, Sinan, ve Mustafa Kerem. “The Effect of Plyometric Exercises Using the Cluster Set Method on Certain Physical and Physiological Parameters in Female Handball Players”. Turkish Journal of Sport and Exercise 26, sy. 3 (Aralık 2024): 476-87. https://doi.org/10.15314/tsed.1522729.
EndNote Buyurukcu S, Kerem M (01 Aralık 2024) The Effect of Plyometric Exercises Using the Cluster Set Method on Certain Physical and Physiological Parameters in Female Handball Players. Turkish Journal of Sport and Exercise 26 3 476–487.
IEEE S. Buyurukcu ve M. Kerem, “The Effect of Plyometric Exercises Using the Cluster Set Method on Certain Physical and Physiological Parameters in Female Handball Players”, Turk J Sport Exe, c. 26, sy. 3, ss. 476–487, 2024, doi: 10.15314/tsed.1522729.
ISNAD Buyurukcu, Sinan - Kerem, Mustafa. “The Effect of Plyometric Exercises Using the Cluster Set Method on Certain Physical and Physiological Parameters in Female Handball Players”. Turkish Journal of Sport and Exercise 26/3 (Aralık 2024), 476-487. https://doi.org/10.15314/tsed.1522729.
JAMA Buyurukcu S, Kerem M. The Effect of Plyometric Exercises Using the Cluster Set Method on Certain Physical and Physiological Parameters in Female Handball Players. Turk J Sport Exe. 2024;26:476–487.
MLA Buyurukcu, Sinan ve Mustafa Kerem. “The Effect of Plyometric Exercises Using the Cluster Set Method on Certain Physical and Physiological Parameters in Female Handball Players”. Turkish Journal of Sport and Exercise, c. 26, sy. 3, 2024, ss. 476-87, doi:10.15314/tsed.1522729.
Vancouver Buyurukcu S, Kerem M. The Effect of Plyometric Exercises Using the Cluster Set Method on Certain Physical and Physiological Parameters in Female Handball Players. Turk J Sport Exe. 2024;26(3):476-87.
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