Position-Specific Anthropometric Characteristics and Body Composition of Female Field Hockey Players
Published 25-04-2025
Keywords
- Sports performance,
- Body fat percentage,
- Somatotype,
- Physical fitness,
- Bioelectrical impedance analysis
- Correlation ...More
How to Cite
Copyright (c) 2025 Ekta Kapri, Subrata Dey, Manju Mehta, Kiran Singh, Keren Harish Tiwari, Erika Zemková

This work is licensed under a Creative Commons Attribution 4.0 International License.
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Abstract
Introduction: This study aimed to examine the anthropometric characteristics, body composition, and somatotypes of female field hockey players. Methods: The study involved 30 female athletes aged ranges 13-21 years from the Giri Center in Hisar, Haryana. The anthropometric measurements were conducted in accordance with the protocols of the International Society for the Advancement of Kinanthropometry (ISAK). Bioelectrical impedance analysis (BIA) was employed to assess body composition, while somatotype was determined using the Heath-Carter method. Data were analyzed using descriptive statistics, correlation analysis, and somatotype indices to explore positional differences. Results: Results showed significant differences in physical attributes based on player positions. The study found significant correlations between height and lean body mass (r=0.639, p≤0.05), indicating the influence of height on muscle development. The anthropometric analysis showed that goalkeepers had notably higher skinfold measurements, signifying greater subcutaneous fat levels, corresponding to lower aerobic demands. Conversely, forwards exhibited substantially lower fat percentage (18.48±3.23%) and higher lean body mass (41.85±4.45 kg), emphasizing their requirement for agility and speed. Goalkeepers showed significantly higher mean shoulder breadth (40.51±1.81 cm, p≤0.0001) and knee height (51.56±2.10 cm, p≤0.0001). Additionally, somatotype analysis revealed that most players were classified as ectomorphic-endomorphs (mean indices of 4.47-1.95-3.31), with fullbacks displaying higher mesomorphy (mean 2.82). Conclusions: These findings emphasize the need for tailored training programs specific to player positions to optimize performance, reduce injury risks, and enhance team effectiveness.
References
- Astorino, T.A., Tam, P.A., Rietschel, J.C., Johnson, S.M., Freedman, T.P. (2004). Changes in physical fitness parameters during a competitive field hockey season. The Journal of Strength & Conditioning Research, 18(4): 850–854. https://doi.org/10.1519/00124278-200411000-00029
- Bacchi, E., Cavedon, V., Zancanaro, C., Moghetti, P., Milanese, C. (2017). Comparison between dual-energy X-ray absorptiometry and skinfold thickness in assessing body fat in overweigh/obese adult patients with type-2 diabetes. Scientific Reports, 7(1): 17424. https://doi.org/10.1038/s41598-017-17788-y
- Carter, J.E.L. (2002). Part 1: The Heath-Carter anthropometric somatotype-instruction manual. Department of Exercise and Nutritional Sciences San Diego State University.1-26
- Cole, T.J., Bellizzi, M.C., Flegal, K.M., Dietz, W.H. (2000). Establishing a standard definition for child overweight and obesity worldwide: international survey. Bmj, 320: 1240. https://doi.org/10.1136/bmj.320.7244.1240
- Durnin, J.V, Womersley, J.V.G.A (1974a). Body fat assessed from total body density and its estimation from skinfold thickness: measurements on 481 men and women aged from 16 to 72 years. British Journal of Nutrition, 32(1): 77–97.
- Durnin, J.V.G.A., Rahaman, M.M. (1967). The assessment of the amount of fat in the human body from measurements of skinfold thickness. British Journal of Nutrition, 21(3): 681–689. https://doi.org/10.1079/BJN19670070
- Durnin, J.V.G.A., Womersley, J. (1974b). Body fat assessed from total body density and its estimation from skinfold thickness: measurements on 481 men and women aged from 16 to 72 years. British Journal of Nutrition, 32(1): 77–97.
- Fedotova, E. (2001). Morphological, Functional, and Fitness-Related Characteristics of Young Female Field Hockey Players. Women in Sport and Physical Activity Journal, 10(2): 145–168. https://doi.org/10.1123/wspaj.10.2.145
- Gleeson, M., Nieman, D.C., Pedersen, B.K. (2004). Exercise, nutrition and immune function. Food, Nutrition and Sports Performance, Journal of sports sciences, 22(1), 115-125.
- Halson, S.L., Lancaster, G.I., Achten, J., Gleeson, M., Jeukendrup, A.E. (2004). Effects of carbohydrate supplementation on performance and carbohydrate oxidation after intensified cycling training. Journal of Applied Physiology, 97(4): 1245–1253. https://doi.org/10.1152/japplphysiol.01368.2003
- Heath, B.H., Carter, J.E.L. (1967). A modified somatotype method. American Journal of Physical Anthropology, 27(1): 57–74. https://doi.org/10.1002/ajpa.1330270108
- Hinkle, D.E., Wiersma, W., Jurs, S.G. (2003). Applied statistics for the behavioral sciences (Vol. 663). Houghton Mifflin Boston.
- Hirani, V., Mindell, J. (2008). A comparison of measured height and demi-span equivalent height in the assessment of body mass index among people aged 65 years and over in England. Age and Ageing, 37(3): 311–317. https://doi.org/10.1093/ageing/afm197
- Holway, F.E., Garavaglia, R. (2009). Kinanthropometry of group I rugby players in Buenos Aires, Argentina. Journal of Sports Sciences, 27(11): 1211–1220. https://doi.org/10.1080/02640410903207408
- Hu, H.M., Zhao, C.Y., Zhang, X., Ran, L.H., Liu, T.J. (2015). Correlation analysis on the main and basic body dimension for Chinese adults. Digital Human Modeling. Applications in Health, Safety, Ergonomics and Risk Management: Ergonomics and Health: 6th International Conference, DHM 2015, Held as Part of HCI International 2015, Los Angeles, CA, USA, August 2-7, 2015, Proceedings, Part II 6, Springer International Publishing,37–43.
- Hume, R. (1966). Prediction of lean body mass from height and weight. Journal of Clinical Pathology, 19(4): 389–391. https://doi.org/10.1136/jcp.19.4.389
- Kapri, E., Dey, S., Mehta, M., Deshpande, N., Zemková, E. (2023). Analysis of Daily Activity Pattern to Estimate the Physical Activity Level and Energy Expenditure of Elite and Non-Elite Athletes. Applied Sciences, 13(5): 2763. https://doi.org/10.3390/app13052763
- Karkare, A. (2011). Anthropometric measurements and body composition of hockey players with respect to their playing positions. Indian Streams Research Journal, 1: 5–8.
- López-Fernández, J., García-Unanue, J., Sánchez-Sánchez, J., Colino, E., Hernando, E., Gallardo, L. (2020). Bilateral asymmetries assessment in elite and sub-elite male futsal players. International Journal of Environmental Research and Public Health, 17(9): 3169. https://doi.org/10.3390/ijerph17093169
- Machado, R.S.P., Coelho, M.A.S.C., Coelho, K.S.C. (2010). Percentual de gordura corporal em idosos: comparação entre os métodos de estimativa pela área adiposa do braço, pela dobra cutânea tricipital e por bioimpedância tetrapolar. Revista Brasileira de Geriatria e Gerontologia, 13(1): 17–27. https://doi.org/10.1590/S1809-98232010000100003
- Manna, I., Khanna, G.L., Dhara, P.C. (2010). Effect of training on anthropometric, physiological and biochemical variables of elite field hockey players. International Journal of Sports Science and Engineering, 4(4): 229–238.
- Mascherini, G., Petri, C., Galanti, G. (2015). Integrated total body composition and localized fat-free mass assessment. Sport Sciences for Health, 11: 217–225. https://doi.org/10.1007/s11332-015-0228-y
- McGuigan, M.R., Cormack, S.J., Gill, N.D. (2013). Strength and Power Profiling of Athletes. Strength & Conditioning Journal, 35(6): 7–14. https://doi.org/10.1519/SSC.0000000000000011
- Nuttall, F.Q. (2015). Body mass index: obesity, BMI, and health: a critical review. Nutrition Today, 50(3): 117–128. https://doi.org/10.1097/NT.0000000000000092
- Petri, C., Campa, F., Hugo Teixeira, V., Izzicupo, P., Galanti, G., Pizzi, A., Badicu, G., Mascherini, G. (2020). Body fat assessment in international elite soccer referees. Journal of Functional Morphology and Kinesiology, 5(2): 38. https://doi.org/10.3390/jfmk5020038
- Puri, T., Blake, G.M. (2022). Comparison of ten predictive equations for estimating lean body mass with dual-energy X-ray absorptiometry in older patients. The British Journal of Radiology, 95(1133): 20210378. https://doi.org/10.1259/bjr.20210378
- Reilly, T., Borrie, A. (1992). Physiology applied to field hockey. Sports Medicine, 14: 10–26. https://doi.org/10.2165/00007256-199214010-00002
- Silveira, E.A., Barbosa, L.S., Rodrigues, A.P.S., Noll, M., De Oliveira, C. (2020). Body fat percentage assessment by skinfold equation, bioimpedance and densitometry in older adults. Archives of Public Health, 78: 1–9. https://doi.org/10.1186/s13690-020-00449-4
- Singh, S., Singh, K., Singh, M. (2010). Anthropometric measurements, body composition and somatotyping of high jumpers. Brazilian Journal of Biomotricity, 4(4): 266–271.
- Suarez-Arrones, L., Petri, C., Maldonado, R.A., Torreno, N., Munguía-Izquierdo, D., Di Salvo, V., Méndez-Villanueva, A. (2018). Body fat assessment in elite soccer players: cross-validation of different field methods. Science and Medicine in Football, 2(3): 203–208. https://doi.org/10.1080/24733938.2018.1445871
- Summer, L.C., Cheng, R., Moran, J.T., Lee, M., Belanger, A.J., Taylor IV, W.L., Gardner, E.C. (2024). Changes in Body Composition and Athletic Performance in National Collegiate Athletic Association Division I Female Field Hockey Athletes Throughout a Competitive Season. The Journal of Strength & Conditioning Research, 38(1): 146–152. https://doi.org/10.1519/JSC.0000000000004591
- Toro-Román, V., Robles-Gil, M.C., Muñoz, D., Bartolomé, I., Grijota, F.J., Maynar-Mariño, M. (2023). Sex differences in cadmium and lead concentrations in different biological matrices in athletes. Relationship with iron status. Environmental Toxicology and Pharmacology, 99: 104107. https://doi.org/10.1016/j.etap.2023.104107
- Ucan, Y. (2015). Effect of National-Level Field Hockey on Physical Fitness and Body Composition Parameters In Turkish Females. The Sport Journal, 1–9. https://doi.org/10.17682/sportjournal/2015.014
- Wassmer, D.J., Mookerjee, S. (2002). A descriptive profile of elite US women’s collegiate field hockey players. Journal of Sports Medicine and Physical Fitness, 42(2): 165.