Araştırma Makalesi
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Koşu Temelli Sürat Performansı Elit Altı Taekwondo Sporcularının Tekme Süratini Yordayabilir mi?

Yıl 2023, Cilt: 3 Sayı: 1, 14 - 27, 27.03.2023

Öz

Amaç: Bu çalışmanın amacı, elit altı taekwondo sporcularının tekme süratleri ile koşu temelli düz, yön değiştirmeli ve tekrarlı sprint süratleri arasındaki ilişkilerin incelenmesi, tekme sürati performansını yordayıcı koşu modellerinin tespit edilmesidir.
Yöntem: Araştırma 30 elit altı taekwondo sporcusunun (15 erkek, 15 kız) gönüllü katılımı ile yapıldı. Sporcuların düz, yön değiştirmeli ve tekrarlı sürat performansları, sırasıyla 20 metre sprint, İllinois ve 35 metre aralıklı sprint testleri ile tespit edildi. Sporcuların tekme süratlerinin tespit edilebilmesi için Taekwondo Performans Protokolü kullanıldı. Elde edilen veriler tanımlayıcı istatistiklere tabi tutulduktan ve normallik analizleri yapıldıktan sonra, verilerin karşılaştırılmasında One-Way Anova, verilerin aralarındaki ilişkilerin incelenmesinde Pearson korelasyon analizi kullanıldı. Tekme süratini yordayabilecek koşu modellerinin tespit edilebilmesi için linear regresyon analizi yapıldı.
Bulgular: Elde edilen sonuçlar, erkek ve kız sporcuların 20 metre sürat, İllinois ve 35 metre tekrarlı sprint performansları ile ortalama ve maksimum tekme sürati performansları arasında orta ve yüksek düzeyde ilişkiler olduğunu gösterdi. Yapılan Linear Regresyon analizi sonunda, 20 metre sürat ve İllinois sürat koşularının, ortalama ve maksimum tekme süratinin önemli yordayıcıları olduğu tespit edildi.
Sonuç: Sonuç olarak, elit altı taekwondo sporcularında koşu temelli sürat performansı ile tekme sürati performansı arasındaki ilişkilerin anlamlı olduğu, koşu temelli sürat performansı testlerinin taekwondoda hızlı tekme atabilme potansiyeli taşıyan sporcuların tespit edilebilmesi için önemli oldukları tespit edildi. Özellikle 20 metre sprint ve İllinois koşuları, yetenek seçiminde isabetli tahminlerde bulunabilmek için önemli testlerdir.

Kaynakça

  • Ahn, J. D., Hong, S. ho, & Park, Y. K. (2009). The historical and cultural identity of taekwondo as a traditional korean martial art. The International Journal of the History of Sport, 26(11), 1716-1734. https://doi.org/10.1080/09523360903132956
  • Akoglu, H. (2018). User’s guide to correlation coefficients. Turkish Journal of Emergency Medicine, 18(3), 91-93. https://doi.org/10.1016/j.tjem.2018.08.001
  • Aloui, A., Tayech, A., Mejri, M. A., Makhlouf, I., Clark, C. C. T., Granacher, U., Zouhal, H., & Ben Abderrahman, A. (2022). Reliability and validity of a new taekwondo-specific change-of-direction speed test with striking techniques in elite taekwondo athletes: A pilot study. Frontiers in Physiology, 13. https://www.frontiersin.org/articles/10.3389/fphys.2022.774546
  • Bencke, J., Damsgaard, R., Saekmose, A., Jørgensen, P., Jørgensen, K., & Klausen, K. (2002). Anaerobic power and muscle strength characteristics of 11 years old elite and non-elite boys and girls from gymnastics, team handball, tennis and swimming. Scandinavian Journal of Medicine & Science in Sports, 12(3), 171-178. https://doi.org/10.1034/j.1600-0838.2002.01128.x
  • Borg, G. A. (1982). Psychophysical bases of perceived exertion. Medicine and science in sports and exercise, 14(5), 377-381.
  • Bouhlel, E., Jouini, A., Gmada, N., Nefzi, A., Ben Abdallah, K., & Tabka, Z. (2006). Heart rate and blood lactate responses during Taekwondo training and competition. Science & Sports, 21(5), 285-290. https://doi.org/10.1016/j.scispo.2006.08.003
  • Bradshaw, E. J., & Rossignol, P. L. (2004). Gymnastics. Sports Biomechanics, 3(2), 249-262. https://doi.org/10.1080/14763140408522844
  • Bridge, C. A., Santos, J. F. D. S., Chaabène, H., Pieter, W., & Franchini, E. (2014). Physical and physiological profiles of taekwondo athletes. Sports Medicine, 44(6), 713-733. https://doi.org/10.1007/s40279-014-0159-9 Brughelli, M., Cronin, J., Levin, G., & Chaouachi, A. (2008). Understanding change of direction ability in sport. Sports Medicine, 38(12), 1045-1063. https://doi.org/10.2165/00007256-200838120-00007
  • Casolino, E., Lupo, C., Cortis, C., Chiodo, S., Minganti, C., Capranica, L., & Tessitore, A. (2012). Technical and tactical analysis of youth taekwondo performance. Journal of Strength and Conditioning Research, 26(6), 1489-1495. https://doi.org/10.1519/JSC.0b013e318231a66d
  • Chaabene, H., Negra, Y., Capranica, L., Bouguezzi, R., Hachana, Y., Rouahi, M. A., & Mkaouer, B. (2018). Validity and reliability of a new test of planned agility in elite taekwondo athletes. The Journal of Strength & Conditioning Research, 32(9), 2542-2547. https://doi.org/10.1519/JSC.0000000000002325
  • Chen, C.-Y., Dai, J., Chen, I.-F., Chou, K.-M., & Chang, C.-K. (2015). Reliability and validity of a dual-task test for skill proficiency in roundhouse kicks in elite taekwondo athletes. Open Access Journal of Sports Medicine, 6, 181-189. https://doi.org/10.2147/OAJSM.S84671
  • Chi, E. H., Song, J., & Corbin, G. (2004). Killer App of wearable computing: Wireless force sensing body protectors for martial arts. 285. https://doi.org/10.1145/1029632.1029680
  • Chiodo, S., Tessitore, A., Cortis, C., Lupo, C., Ammendolia, A., Iona, T., & Capranica, L. (2011). Effects of official taekwondo competitions on all-out performances of elite athletes. Journal of Strength and Conditioning Research, 25(2), 334-339. https://doi.org/10.1519/JSC.0b013e3182027288
  • Chiu, P.-H., Wang, H.-H., & Chen, Y.-C. (2007). Designing a measurement system for taekwondo training. Journal of Biomechanics, 40, S619. https://doi.org/10.1016/s0021-9290(07)70607-3
  • Draper, P. N., & Whyte, G. (1997). Anaerobic performance testing. University of Canterbury. School of Sport & Physical Education, 87, 7-9.
  • Gaamouri, N., Zouhal, H., Hammami, M., Hackney, A. C., Abderrahman, A. B., Saeidi, A., El Hage, R., & Ounis, O. B. (2019). Effects of polyphenol (carob) supplementation on body composition and aerobic capacity in taekwondo athletes. Physiology & Behavior, 205, 22-28. https://doi.org/10.1016/j.physbeh.2019.03.003
  • Getchell, B. (1979). Physical Fitness: A Way of Life (2. bs). USA: John Wiley & Sons, Inc.
  • Haugen, T. A., Tønnessen, E., & Seiler, S. (2012). Speed and countermovement-jump characteristics of elite female soccer players, 1995-2010. International Journal of Sports Physiology and Performance, 7(4), 340-349. https://doi.org/10.1123/ijspp.7.4.340
  • Jung, T., & Park, H. (2018). The effects of defensive footwork on the kinematics of taekwondo roundhouse kicks. European Journal of Human Movement, 40, 78-95.
  • Jung, T., & Park, H. (2020). The effects of back-step footwork on taekwondo roundhouse kick for the counterattack. European Journal of Human Movement, 44, 129-145.
  • Kandrac, R., Peric, T., Dzugas, D., Kacur, P., Tomkova, P., Kokinda, M., & Turek, M. (2020). The use of individual sports profiles of child athletes and nonathletes in recommending sports to be practiced. Physical Activity Review, 8(1), 1-8. https://doi.org/10.16926/par.2020.08.01
  • Kazemi, M., Perri, G., & Soave, D. (2010). A profile of 2008 Olympic taekwondo competitors. The Journal of the Canadian Chiropractic Association, 54(4), 249. Kazemi, M., Waalen, J., Morgan, C., & White, A. R. (2006). A profile of Olympic taekwondo competitors. Journal of Sports Science and Medicine, 5(CSSI-1), 114-121.
  • Kwon, C., Lee, S., Park, J., & Johnson, J. A. (2019). An estimation model for anaerobic power of taekwondo athletes based on field tests. Ido Movement for Culture-Journal of Martial Arts Anthropology, 19(1), 34-50. https://doi.org/10.14589/ido.19.1.4
  • Marković, G., Mišigoj-Duraković, M., & Trninić, S. (2005). Fitness profile of elite Croatian female taekwondo athletes. Collegium Antropologicum, 29(1), 93-99.
  • Ölmez, C., & Yüksek, S. (2023). Development of the taekwondo performance protocol to assess technical speed and quickness. Baltic Journal of Health and Physical Activity, 15(1). https://www.balticsportscience.com/journal/vol15/iss1/1
  • Santos, J. F. da S., Dias Wilson, V., Herrera-Valenzuela, T., & Sander Mansur Machado, F. (2020). Time-motion analysis and physiological responses to taekwondo combat in juvenile and adult athletes: a systematic review. Strength & Conditioning Journal, 42(2), 103. https://doi.org/10.1519/SSC.0000000000000517
  • Santos, J. F. da S., & Franchini, E. (2018). Frequency speed of kick test performance comparison between female taekwondo athletes of different competitive levels. Journal of Strength and Conditioning Research, 32(10), 2934-2938. https://doi.org/10.1519/JSC.0000000000002552
  • Santos, J. F. da S., Loturco, I., & Franchini, E. (2018). Relationship between frequency speed of kick test performance, optimal load, and anthropometric variables in black-belt taekwondo athletes. Ido Movement for Culture. Journal of Martial Arts Anthropology, 18(1), 39-44. https://doi.org/10.14589/ido.18.1.6
  • Singh, A., Sathe, A., & Sandhu, J. (2017). Effect of a 6-week agility training program on performance indices of Indian taekwondo players. Saudi Journal of Sports Medicine, 17(3), 143. https://doi.org/10.4103/sjsm.sjsm_19_17
  • Tayech, A., Mejri, M. A., Chaabene, H., Chaouachi, M., Behm, D. G., & Chaouachi, A. (2019). Test-retest reliability and criterion validity of a new taekwondo anaerobic intermittent kick test. The Journal of Sports Medicine and Physical Fitness, 59(2), 230-237. https://doi.org/10.23736/S0022-4707.18.08105-7
  • Vala, R., Valova, M., Litschmannova, M., & Klimtova, H. (2010). Sprinting abilities of year six students undergoing additional physical education classes. New Educational Review, 22(3-4), 165-177.
  • World Medical Association. (2013). World Medical Association Declaration of Helsinki: Ethical principles for medical research involving human subjects. JAMA, 310(20), 2191-2194. https://doi.org/10.1001/JAMA.2013.281053
  • Xiang-jun, L. I. (2014). Study on development trend of taekwondo tactical from the16th Asian Games of taekwondo competition. Journal of Lanzhou University of Arts and Science (Natural Science Edition), 5, 20.
  • Zagatto, A. M., Beck, W. R., & Gobatto, C. A. (2009). Validity of the running anaerobic sprint test for assessing anaerobic power and predicting short-distance performances. Journal of Strength and Conditioning Research, 23(6), 1820-1827. https://doi.org/10.1519/JSC.0B013E3181B3DF32
  • Ziv, G., & Lidor, R. (2009). Physical characteristics, physiological attributes, and on-court performances of handball players: A review. European Journal of Sport Science, 9(6), 375-386. https://doi.org/10.1080/17461390903038470

Can Running-Based Sprint Performance Predict Kicking Speed of Sub-Elite Taekwondo Athletes?

Yıl 2023, Cilt: 3 Sayı: 1, 14 - 27, 27.03.2023

Öz

Purpose: The aim of this study was to investigate the relationships between the kicking velocities of sub-elite taekwondo athletes and their running-based general, directional, and repetitive sprint speeds, and to determine the running models predicting kicking speed performance.
Method: The study was conducted with the voluntary participation of 30 sub-elite taekwondo athletes (15 male, 15 female). The straight, directional and repetitive sprint performances of the athletes were determined by 20-meter sprint, Illinois and 35-meter interval sprint tests, respectively. Taekwondo Performance Protocol was used to determine the kicking speed of the athletes. After the obtained data were subjected to descriptive statistics and normality analysis, One-Way Anova was used to compare the data and Pearson correlation analysis was used to examine the relationships between the data. Linear regression analysis was performed to determine the running patterns that could predict kicking speed.
Results: The results showed that there were moderate to high correlations between 20-meter sprint, Illinois sprint and 35-meter repeated sprint performances and average and maximum kick speed performances of male and female athletes. Linear regression analysis revealed that 20-meter sprint and Illinois sprint were significant predictors of average and maximum kick velocity.
Conclusion: As a result, it was determined that the relationships between running-based sprint performance and kicking speed performance in sub-elite taekwondo athletes were significant, and running-based sprint performance tests are important to identify athletes who have the potential to kick fast in taekwondo. Especially 20 meters and Illinois sprints are important tests to make accurate predictions in talent selection.

Kaynakça

  • Ahn, J. D., Hong, S. ho, & Park, Y. K. (2009). The historical and cultural identity of taekwondo as a traditional korean martial art. The International Journal of the History of Sport, 26(11), 1716-1734. https://doi.org/10.1080/09523360903132956
  • Akoglu, H. (2018). User’s guide to correlation coefficients. Turkish Journal of Emergency Medicine, 18(3), 91-93. https://doi.org/10.1016/j.tjem.2018.08.001
  • Aloui, A., Tayech, A., Mejri, M. A., Makhlouf, I., Clark, C. C. T., Granacher, U., Zouhal, H., & Ben Abderrahman, A. (2022). Reliability and validity of a new taekwondo-specific change-of-direction speed test with striking techniques in elite taekwondo athletes: A pilot study. Frontiers in Physiology, 13. https://www.frontiersin.org/articles/10.3389/fphys.2022.774546
  • Bencke, J., Damsgaard, R., Saekmose, A., Jørgensen, P., Jørgensen, K., & Klausen, K. (2002). Anaerobic power and muscle strength characteristics of 11 years old elite and non-elite boys and girls from gymnastics, team handball, tennis and swimming. Scandinavian Journal of Medicine & Science in Sports, 12(3), 171-178. https://doi.org/10.1034/j.1600-0838.2002.01128.x
  • Borg, G. A. (1982). Psychophysical bases of perceived exertion. Medicine and science in sports and exercise, 14(5), 377-381.
  • Bouhlel, E., Jouini, A., Gmada, N., Nefzi, A., Ben Abdallah, K., & Tabka, Z. (2006). Heart rate and blood lactate responses during Taekwondo training and competition. Science & Sports, 21(5), 285-290. https://doi.org/10.1016/j.scispo.2006.08.003
  • Bradshaw, E. J., & Rossignol, P. L. (2004). Gymnastics. Sports Biomechanics, 3(2), 249-262. https://doi.org/10.1080/14763140408522844
  • Bridge, C. A., Santos, J. F. D. S., Chaabène, H., Pieter, W., & Franchini, E. (2014). Physical and physiological profiles of taekwondo athletes. Sports Medicine, 44(6), 713-733. https://doi.org/10.1007/s40279-014-0159-9 Brughelli, M., Cronin, J., Levin, G., & Chaouachi, A. (2008). Understanding change of direction ability in sport. Sports Medicine, 38(12), 1045-1063. https://doi.org/10.2165/00007256-200838120-00007
  • Casolino, E., Lupo, C., Cortis, C., Chiodo, S., Minganti, C., Capranica, L., & Tessitore, A. (2012). Technical and tactical analysis of youth taekwondo performance. Journal of Strength and Conditioning Research, 26(6), 1489-1495. https://doi.org/10.1519/JSC.0b013e318231a66d
  • Chaabene, H., Negra, Y., Capranica, L., Bouguezzi, R., Hachana, Y., Rouahi, M. A., & Mkaouer, B. (2018). Validity and reliability of a new test of planned agility in elite taekwondo athletes. The Journal of Strength & Conditioning Research, 32(9), 2542-2547. https://doi.org/10.1519/JSC.0000000000002325
  • Chen, C.-Y., Dai, J., Chen, I.-F., Chou, K.-M., & Chang, C.-K. (2015). Reliability and validity of a dual-task test for skill proficiency in roundhouse kicks in elite taekwondo athletes. Open Access Journal of Sports Medicine, 6, 181-189. https://doi.org/10.2147/OAJSM.S84671
  • Chi, E. H., Song, J., & Corbin, G. (2004). Killer App of wearable computing: Wireless force sensing body protectors for martial arts. 285. https://doi.org/10.1145/1029632.1029680
  • Chiodo, S., Tessitore, A., Cortis, C., Lupo, C., Ammendolia, A., Iona, T., & Capranica, L. (2011). Effects of official taekwondo competitions on all-out performances of elite athletes. Journal of Strength and Conditioning Research, 25(2), 334-339. https://doi.org/10.1519/JSC.0b013e3182027288
  • Chiu, P.-H., Wang, H.-H., & Chen, Y.-C. (2007). Designing a measurement system for taekwondo training. Journal of Biomechanics, 40, S619. https://doi.org/10.1016/s0021-9290(07)70607-3
  • Draper, P. N., & Whyte, G. (1997). Anaerobic performance testing. University of Canterbury. School of Sport & Physical Education, 87, 7-9.
  • Gaamouri, N., Zouhal, H., Hammami, M., Hackney, A. C., Abderrahman, A. B., Saeidi, A., El Hage, R., & Ounis, O. B. (2019). Effects of polyphenol (carob) supplementation on body composition and aerobic capacity in taekwondo athletes. Physiology & Behavior, 205, 22-28. https://doi.org/10.1016/j.physbeh.2019.03.003
  • Getchell, B. (1979). Physical Fitness: A Way of Life (2. bs). USA: John Wiley & Sons, Inc.
  • Haugen, T. A., Tønnessen, E., & Seiler, S. (2012). Speed and countermovement-jump characteristics of elite female soccer players, 1995-2010. International Journal of Sports Physiology and Performance, 7(4), 340-349. https://doi.org/10.1123/ijspp.7.4.340
  • Jung, T., & Park, H. (2018). The effects of defensive footwork on the kinematics of taekwondo roundhouse kicks. European Journal of Human Movement, 40, 78-95.
  • Jung, T., & Park, H. (2020). The effects of back-step footwork on taekwondo roundhouse kick for the counterattack. European Journal of Human Movement, 44, 129-145.
  • Kandrac, R., Peric, T., Dzugas, D., Kacur, P., Tomkova, P., Kokinda, M., & Turek, M. (2020). The use of individual sports profiles of child athletes and nonathletes in recommending sports to be practiced. Physical Activity Review, 8(1), 1-8. https://doi.org/10.16926/par.2020.08.01
  • Kazemi, M., Perri, G., & Soave, D. (2010). A profile of 2008 Olympic taekwondo competitors. The Journal of the Canadian Chiropractic Association, 54(4), 249. Kazemi, M., Waalen, J., Morgan, C., & White, A. R. (2006). A profile of Olympic taekwondo competitors. Journal of Sports Science and Medicine, 5(CSSI-1), 114-121.
  • Kwon, C., Lee, S., Park, J., & Johnson, J. A. (2019). An estimation model for anaerobic power of taekwondo athletes based on field tests. Ido Movement for Culture-Journal of Martial Arts Anthropology, 19(1), 34-50. https://doi.org/10.14589/ido.19.1.4
  • Marković, G., Mišigoj-Duraković, M., & Trninić, S. (2005). Fitness profile of elite Croatian female taekwondo athletes. Collegium Antropologicum, 29(1), 93-99.
  • Ölmez, C., & Yüksek, S. (2023). Development of the taekwondo performance protocol to assess technical speed and quickness. Baltic Journal of Health and Physical Activity, 15(1). https://www.balticsportscience.com/journal/vol15/iss1/1
  • Santos, J. F. da S., Dias Wilson, V., Herrera-Valenzuela, T., & Sander Mansur Machado, F. (2020). Time-motion analysis and physiological responses to taekwondo combat in juvenile and adult athletes: a systematic review. Strength & Conditioning Journal, 42(2), 103. https://doi.org/10.1519/SSC.0000000000000517
  • Santos, J. F. da S., & Franchini, E. (2018). Frequency speed of kick test performance comparison between female taekwondo athletes of different competitive levels. Journal of Strength and Conditioning Research, 32(10), 2934-2938. https://doi.org/10.1519/JSC.0000000000002552
  • Santos, J. F. da S., Loturco, I., & Franchini, E. (2018). Relationship between frequency speed of kick test performance, optimal load, and anthropometric variables in black-belt taekwondo athletes. Ido Movement for Culture. Journal of Martial Arts Anthropology, 18(1), 39-44. https://doi.org/10.14589/ido.18.1.6
  • Singh, A., Sathe, A., & Sandhu, J. (2017). Effect of a 6-week agility training program on performance indices of Indian taekwondo players. Saudi Journal of Sports Medicine, 17(3), 143. https://doi.org/10.4103/sjsm.sjsm_19_17
  • Tayech, A., Mejri, M. A., Chaabene, H., Chaouachi, M., Behm, D. G., & Chaouachi, A. (2019). Test-retest reliability and criterion validity of a new taekwondo anaerobic intermittent kick test. The Journal of Sports Medicine and Physical Fitness, 59(2), 230-237. https://doi.org/10.23736/S0022-4707.18.08105-7
  • Vala, R., Valova, M., Litschmannova, M., & Klimtova, H. (2010). Sprinting abilities of year six students undergoing additional physical education classes. New Educational Review, 22(3-4), 165-177.
  • World Medical Association. (2013). World Medical Association Declaration of Helsinki: Ethical principles for medical research involving human subjects. JAMA, 310(20), 2191-2194. https://doi.org/10.1001/JAMA.2013.281053
  • Xiang-jun, L. I. (2014). Study on development trend of taekwondo tactical from the16th Asian Games of taekwondo competition. Journal of Lanzhou University of Arts and Science (Natural Science Edition), 5, 20.
  • Zagatto, A. M., Beck, W. R., & Gobatto, C. A. (2009). Validity of the running anaerobic sprint test for assessing anaerobic power and predicting short-distance performances. Journal of Strength and Conditioning Research, 23(6), 1820-1827. https://doi.org/10.1519/JSC.0B013E3181B3DF32
  • Ziv, G., & Lidor, R. (2009). Physical characteristics, physiological attributes, and on-court performances of handball players: A review. European Journal of Sport Science, 9(6), 375-386. https://doi.org/10.1080/17461390903038470
Toplam 35 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Spor Hekimliği
Bölüm Araştırma Makaleleri
Yazarlar

Cengiz Ölmez 0000-0001-8584-6272

Yayımlanma Tarihi 27 Mart 2023
Yayımlandığı Sayı Yıl 2023 Cilt: 3 Sayı: 1

Kaynak Göster

APA Ölmez, C. (2023). Koşu Temelli Sürat Performansı Elit Altı Taekwondo Sporcularının Tekme Süratini Yordayabilir mi?. Kafkas Üniversitesi Spor Bilimleri Dergisi, 3(1), 14-27.

Spor Bilimleri alanındaki çalışmaları içeren hakemli dergi olarak yayımlanan Kafkas Üniversitesi Spor Bilimleri Dergisi'nin Ekim 2023'de çıkacak olan sayısı için dergimizin kapsamı dahilinde olan konularla ilgili özgün araştırma ve derleme türünde makaleler kabul edilecektir. Bu anlamda ilgili sayı için makaleler 2023 yılının Ağustos ayı sonuna kadar gönderilebilir.

Bilgilerinize sunulur.

Editör

Prof. Dr. Erdoğan KAYGIN