Open Access

Anthropometric characteristics are highly correlated with anaerobic power in male handball and soccer players

1 Düzce University, Faculty of Sports Sciences, Türkiye
2 Dokuz Eylül University, Necat Hepkon Faculty of Sports Sciences, Türkiye
3 Bilecik Şeyh Edebali University, Faculty of Health Sciences, Türkiye

Abstract

The purpose of this research is to examine the relationship between anthropometric characteristics and anaerobic power of volunteer male athletes. Male athletes in the college soccer and handball teams (n: 20; age: 23.20±1.94 years; height: 179.81±7.96cm; weight: 79.50±9.23kg) volunteered for the study. For anthropometric characteristics, some measurements (body height, arm span, hand length, and chest, waist, arm, thigh and leg circumferences) were taken. Vertical jump height via Countermovement Jump (CMJ) test and body weight were also measured. Anaerobic power value was obtained using Lewis formula. For statistical analysis, descriptive statistics and Pearson correlation analyses were performed using the SPSS 17.00 package program. Significance value was set as p<0.05. There found a positive correlation between anaerobic power values ​​and the values of body height (r=.660), body weight (r=0.912), arm span (r=0.547), dominant hand length (r=0.578), upper arm circumference (relaxed) (r=0.690), upper arm circumference (flexed) (r=0.689), thigh circumference (r=0.643), calf circumference (r=0.533), waist circumference (r=0.826), chest circumference (r=0.704), vertical jump height (r=0.493).​​ The results showed that there was a statistically significant and high correlation between all measured anthropometric characteristics and anaerobic power values. Therefore, it is recommended trainers pay attention to these characteristics in player selection, training plans and determining performance of athletes.

Keywords

How to Cite

Karadenizli, Z. I., Ozkamcı, H., & Zileli, R. (2023). Anthropometric characteristics are highly correlated with anaerobic power in male handball and soccer players. Journal of ROL Sport Sciences, 4(2), 746–760. https://doi.org/10.5281/zenodo.8023078

References

📄 Akuthota, V., Ferreiro, A., Moore, T., & Fredericson, M. (2008). Core stability exercise principles. Current Sports Medicine Reports, 7(1), 39-44.
📄 Arı, Y., Tunçel, A., & Harbili, E. (2020). The relationships among agility, speed, anaerobic power, and upper extremity strength in young handball players. Journal of Physical Education and Sport Sciences, 22(2), 71-81.
📄 Aslan, C. S., Büyükdere, C., Köklü, Y., Özkan, A., & Özdemir, F. N. Ş. (2011). The relationships among body composition, anaerobic performance and back strength characteristics of sub-elite athletes. Uluslararası İnsan Bilimleri Dergisi, 8(1), 1612-1628.
📄 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 İn Sports, 12(3), 171-178.
📄 Chelly, M. S., Hermassi, S., & Shephard, R. J. (2010). Relationships between power and strength of the upper and lower limb muscles and throwing velocity in male handball players. The Journal of Strength & Conditioning Research, 24(6), 1480-1487.