Anthropometrical and Physiological characteristics of Indian National Artistic Gymnasts: A Gender-Based Perspective
Published 19-04-2025
Keywords
- Anthropometric characteristics,
- Artistic Gymnastics,
- Gender,
- Physiological profile
How to Cite
Copyright (c) 2025 Riya Ghosh, Shreya Sinha, Snehunsu Adhikari

This work is licensed under a Creative Commons Attribution 4.0 International License.
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Abstract
Introduction: Artistic gymnastics is a type of sport in which physiological and anthropometric characteristics play a substantial role in performance which differ by gender. Severa studies are carried out on these aspects internationally, but very limited studies were concentrated on Indian gymnasts. Therefore, the aim of our study is to assess and compare the anthropometric and physiological characteristics of national-level male and female artistic gymnasts. Methods: The study was carried out among 38 gymnasts (20 males and 18 females). Anthropometric parameters such as height, weight etc. were measured according to standard protocols followed by ISAK manual. Physiological assessments included flexibility (sit-and-reach test), VO₂max (treadmill test with gas analyzer), and anaerobic power (Wingate Anaerobic Test). Results: Male gymnasts had significantly higher values in height (p = 0.005), weight (p = 0.037), lean mass (p = 0.009), VO₂max (p < 0.001), and maximum power (p = 0.006) compared to female gymnasts. Female gymnasts had higher body fat percentage (p = 0.006). Flexibility and BMI showed no significant gender difference. Effect size analysis indicated large differences in strength and aerobic/anaerobic capacities, with males outperforming females. Conclusions: The study highlights clear gender-based differences in the anthropometric and physiological profiles of Indian artistic gymnasts.
References
- Allen, W. K., Seals, D. R., Hurley, B. F., Hurley, E. F., Ehsani, A. A., Hagberg, J. M. (1985). Lactate threshold and distance running performance in young and older endurance athletes. Journal of Applied Physiology, 58: 1281–1284. 10.1152/jappl.1985.58.4.1281
- Arazi, H., Faraji, H., Mehrtash, M. (2013). Anthropometric and physiological profile of Iranian junior elite gymnasts. Physical Education and Sport, 11(1): 35–41. https://doi.org/10.52165/sgj.12.2.187-193
- Arazi, H., Faraji, H., Mohammadi, S.M. (2011). Anthropometric and physiological profiles of elite Iranian junior rowers. Middle-East Journal of Scientific Research, 9(2): 162–166.
- Åstrand, P.O., Rodahl, K. (1976). Textbook of work physiology. McGraw-Hill.
- Atiković, A. (2020). Anthropometric characteristics of Olympic female and male artistic gymnasts from 1996 to 2016. International Journal of Morphology, 38(4): 990–996. https://doi.org/10.4067/S0717-95022020000400990
- Ávila-Carvalho, L., Klentrou, P., Palomero, M. D. L., & Lebre, E. (2012). Body composition profile of elite group rhythmic gymnasts. Science of Gymnastics Journal, 4(1): 21–32.
- Bradshaw, E. J. (2010). Performance and health concepts in artistic gymnastics. In Proceedings of the 28th International Symposium of Biomechanics in Sports Marquette, Michigan, USA.
- Bradshaw, E. J., & Rossignol, P. (2004). Anthropometric and biomechanical field measures of floor and vault ability in 8 to 14-year-old talent-selected gymnasts. Sports Biomechanics, 3(2): 249–262. 10.1080/14763140408522844
- Brodie, D. A., Royce, J. (1998). Developing flexibility during childhood and adolescence Pediatric anaerobic performance. Human Kinetics.
- Cagno, A.D., Baldari, C., Battaglia, C., Monteiro, M. D., Pappalardo, A., Piazza, M., Guidetti, L. (2009). Factors influencing the performance of competitive and amateur rhythmic gymnastics: Gender differences. Journal of Science and Medicine in Sport, 12: 411–416. 10.1016/j.jsams.2008.01.006
- Chamorro, G.R., Belando, S.E., Lorenzo, G.M., Lafarga, B.C., Roche, E. (2012). Skinfolds sum: Reference values for top athletes. International Journal of Morphology, 30(3): 803–809. https://doi.org/10.4067/S0717-95022012000300005
- Claessens, A. L., Lefevre, J., Beunen, G., Malina, R. M. (1999). The contribution of anthropometric characteristics to performance scores in elite female gymnasts. The Journal of Sports Medicine and Physical Fitness, 39, 355–360.
- Claessens, A.L., Lefevre, J., Beunen, G., Stijnen, V., Maes, H., Veer, M. F. (1991). Gymnastic performance as related to anthropometric and somatotype characteristics in male gymnasts. Anthropologiai Kozlemenyek, 33: 243–247.
- Dallas, G., Mavidis, S., Dallas, C., & Papouliakos, S. (2017). Gender differences of high-level gymnasts on postural stability: The effect of ankle sprain injuries. Science of Gymnastics Journal, 9(3): 291–301.https://doi.org/10.52165/sgj.9.3.291-301
- Dallas, G., Zacharogiannis, E., & Paradisis, G. (2013). Physiological profile of elite Greek gymnasts. Journal of Physical Education and Sport, 13(1): 27.
- Daly, R. M., Caine, D., Bass, S., Pieter, W., & Broekhoff, J. (2005). Growth of highly versus moderately competitive female artistic gymnasts. Journal of the American College of Sports Medicine, 37: 1053–1060.
- España-Romero, V., Ortega, F. B., Vicente-Rodríguez, G., Artero, E.G., Rey, J. P., Ruiz, J. R. (2010). Elbow position affects handgrip strength in adolescents: Validity and reliability of Jamar, DynEx, and TKK dynamometers. Journal of Strength and Conditioning Research, 24(1): 272–277. https://doi.org/10.1519/JSC.0b013e3181b296a5
- Georgopoulos, N.A., Markou, K.B., Theodoropoulou, A., Vagenakis, A.G., Benardot, D. (2001). Height, velocity and skeletal maturation in elite female rhythmic gymnasts. Journal of Clinical Endocrinology & Metabolism, 86(11): 5159–5164. https://doi.org/10.1210/jcem.86.11.8041
- Goswami, A., & Gupta, S. (1998). Cardiovascular stress and lactate formation during gymnastic routines. Journal of Sports Medicine and Physical Fitness, 38: 317–322.
- Hill, W., Rowell, A. L. (1996). Running velocity at VO₂max. Medicine and Science in Sports and Exercise, 28, 114–119. https://doi.org/10.1097/00005768-199601000-00022
- Inbar, O., Bar-Or, O., Skinner, J.S. (1996). The Wingate anaerobic test. Human Kinetics.
- Jemmi, M., Friemel, F.C., Lechevalier, J.M., Origas, M. (2000). Heart rate and blood lactate concentration analysis during a high-level men’s gymnastics competition. Journal of Strength and Conditioning Association, 14(4): 389–394. https://doi.org/10.1519/00124278-200011000-00004
- João, A.F., Filho, J.F. (2015). Somatotype and body composition of elite Brazilian gymnasts. Science of Gymnastics Journal, 7(2): 45–54. https://doi.org/10.52165/sgj.7.2.45-54
- Koley, S., Kumaar, B. S., Shadagopan, S.P. (2012). Anthropometric, physical strength, body composition and performance test profiles of inter-district level male cricketers of Punjab, India. The Anthropologist, 14(5): 445–451.
- Manna, T., Goswami, A., Karmakar Chatterjee, S., Dhingra, M., Dey, S. K. (2017). Comparison of various physical and body composition profiles between Indian elite male and female gymnasts. Baltic Journal of Health and Physical Activity, 9(2): 4.
- Mass-Westropp, N.M., Gill, T.K., Taylor, A. W, Bohannon, R.W., Hill, C.L. (2011). Hand grip strength: Age and gender stratified normative data in a population-based study. BMC Research Notes, 4: 127–135. https://doi.org/10.1186/1756-0500-4-127
- Muqarram, M. (2015). Comparative study on lower arm length of athletes at different levels of competition. Journal of Physical Education Research, 2(1): 40–46.
- Nieman, D.C. (1990). Fitness and sport medicine: An introduction. Bull Publishing Company. 150–151.
- Russell, K. (1987). Gymnastic talent from detection to perfection. In World identification systems for gymnastic talent. Sport Psyche Editions, 151–159.
- Sener, U., Uçok, K., Ulasli, A. M., Genc, A., Karabacak, H., Coban, N.F., Simsek H., Akkurt, H.E. (2016). Evaluation of health-related physical fitness parameters and association analysis with depression, anxiety, and quality of life in patients with fibromyalgia. International Journal of Rheumatic Diseases, 19(8): 763–772. https://doi.org/10.1111/1756-185X.12237
- Slaughter, M. H., Lohman, T. G., Boileau, R. A., Horswill, C. A., Stillman, R. J., Van Loan, M. D., & Bemben, D. A. (1988). Skinfold equations for estimation of body fatness in children and youth. Human Biology, 60: 709–723.
- Taaffe, D. R., Robinson, T. L., Snow, C. M., & Marcus, R. (1997). High-impact exercise promotes bone gain in well-trained female athletes. Journal of Bone and Mineral Research, 12, 255–260. https://doi.org/10.1359/jbmr.1997.12.2.255
- Viana, J., Lebre, E. (2005). Heart rate analysis during men’s and women’s artistic gymnastics routines. 5th International Conference of the FRAGA. Association Française de Recherche en Activités Gymnastiques et Acrobatiques.