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Sports Performance

Quality of lean body mass and jump capacity in high performance young basketball players lean body mass and jump capacity

ORCID Icon, ORCID Icon, ORCID Icon & ORCID Icon
Pages 1667-1677 | Received 20 Jun 2023, Accepted 27 Nov 2023, Published online: 07 Dec 2023

References

  • Abt, G., Jobson, S., Morin, J. B., Passfield, L., Sampaio, J., Sunderland, C., & Twist, C. (2022). Raising the bar in sports performance research. Journal of Sports Sciences, 40(2), 125–129. https://doi.org/10.1080/02640414.2021.2024334
  • Alvero-Cruz, J. R., Carnero, E. A., Fernández-García, J. C., Barrera-Expósito, J., & Sardinha, L. B. (2010). A prediction equation of fat mass in Spanish adolescents. Obesity Reviews, 11(S1), 216.
  • Amaral, J. F., Mancini, M., & Novo Júnior, J. M. (2012). Comparison of three hand dynamometers in relation to the accuracy and precision of the measurements. Revista Brasileira de Fisioterapia, 16(3), 216–224. https://doi.org/10.1590/s1413-35552012000300007
  • Ben Abdelkrim, N., Chaouachi, A., Chamari, K., Chtara, M., & Castagna, C. (2010). Positional role and competitive-level differences in elite-level men’s basketball players. Journal of Strength & Conditioning Research, 24(5), 1346–1355. https://doi.org/10.1519/JSC.0b013e3181cf7510
  • Ben Abdelkrim, N., El Fazaa, S., El Ati, J., & Tabka, Z. (2007). Time-motion analysis and physiological data of elite under-19-year-old basketball players during competition. British Journal of Sports Medicine, 41(2), 69–75. https://doi.org/10.1136/bjsm.2006.032318
  • Calleja González, J., Mielgo Ayuso, J., Lekue, J. A., Leibar, X., Erauzkin, J., Jukic, I., Ostojic, S. M., Ponce González, J. G., Fuentes Azpiroz, M., & Terrados, N. (2018). Anthropometry and performance of top youth international male basketball players in Spanish national academy. Características antropométricas y de rendimiento de jugadores internacionales junior de baloncesto de la academia española de baloncesto Siglo XXI. Nutricion Hospitalaria, 35(6), 1331–1339. https://doi.org/10.20960/nh.1897
  • Carnero, E. A., Alvero-Cruz, J. R., Giráldez García, M. A., & Sardinha, L. B. (2015). [”In vivo” body composition assessment; part I: A historic overview]. Nutricion Hospitalaria, 31(5), 1957–1967. https://doi.org/10.3305/nh.2015.31.5.8570
  • Carvalho, H. M., Coelho, E., Silva, M. J., Figueiredo, A. J., Philippaerts, R. M., Castagna, C., & Malina, R. M. (2011). Predictors of maximal short-term power outputs in basketball players 14–16 years. European Journal of Applied Physiology, 111(5), 789–796. https://doi.org/10.1007/s00421-010-1703-4
  • Chaouachi, A., Brughelli, M., Chamari, K., Levin, G. T., Ben Abdelkrim, N., Laurencelle, L., & Castagna, C. (2009). Lower limb maximal dynamic strength and agility determinants in elite basketball players. Journal of Strength & Conditioning Research, 23(5), 1570–1577. https://doi.org/10.1519/JSC.0b013e3181a4e7f0
  • Cormery, B., Marcil, M., & Bouvard, M. (2008). Rule change incidence on physiological characteristics of elite basketball players: A 10-year-period investigation. British Journal of Sports Medicine, 42(1), 25–30. https://doi.org/10.1136/bjsm.2006.033316
  • Delextrat, A., & Cohen, D. (2008). Physiological testing of basketball players: Toward a standard evaluation of anaerobic fitness. Journal of Strength & Conditioning Research, 22(4), 1066–1072. https://doi.org/10.1519/JSC.0b013e3181739d9b
  • Drinkwater, E. J., Pyne, D. B., & McKenna, M. J. (2008). Design and interpretation of anthropometric and fitness testing of basketball players. Sports Medicine, 38(7), 565–578. https://doi.org/10.2165/00007256-200838070-00004
  • Esco, M. R., Fedewa, M. V., Cicone, Z. S., Sinelnikov, O. A., Sekulic, D., & Holmes, C. J. (2018). Field-based performance tests are related to body fat percentage and fat-free mass, but not body mass index, in youth soccer players. Sports, 6(4), 105. https://doi.org/10.3390/sports6040105
  • Farley, J. B., Stein, J., Keogh, J. W. L., Woods, C. T., & Milne, N. (2020). The relationship between physical fitness qualities and Sport-specific technical Skills in female, team-based ball players: A systematic review. Sports Medicine Open, 6(1), 18. https://doi.org/10.1186/s40798-020-00245-y
  • Fields, J. B., Merrigan, J. J., White, J. B., & Jones, M. T. (2018). Body composition variables by sport and sport-position in elite collegiate athletes. Journal of Strength & Conditioning Research, 32(11), 3153–3159. https://doi.org/10.1519/JSC.0000000000002865
  • Guimarães, E., Ramos, A., Janeira, M. A., Baxter-Jones, A. D. G., & Maia, J. (2019). How does biological maturation and training experience impact the physical and technical performance of 11–14-Year-Old male basketball players? Sports, 7(12), 243. https://doi.org/10.3390/sports7120243
  • Hoffman, J., Tenenbaum, G., Maresh, C. M., & Kraemer, W. J. (1996). Relationship between athletic performance tests and playing time in elite college basketball players. The Journal of Strength & Conditioning Research. 10(2), 67–71. https://doi.org/10.1519/1533-4287(1996)010<0067:RBAPTA>2.3.CO;2
  • Hopkins, W. G. (2000). Measures of reliability in sports medicine and science. Sports Medicine, 30(1), 1–15. https://doi.org/10.2165/00007256-200030010-00001
  • Hopkins, W. G., Marshall, S. W., Batterham, A. M., & Hanin, J. (2009). Progressive statistics for studies in sports medicine and exercise science. Medicine & Science in Sports & Exercise, 41(1), 3–13. https://doi.org/10.1249/MSS.0b013e31818cb278
  • Hunter, G. R., Hilyer, J., & Forster, M. A. (1993). Changes in fitness during 4 years of intercollegiate basketball. Journal of Strength & Conditioning Research, 7(1), 26–29. https://doi.org/10.1519/00124278-199302000-00005
  • Janssen, I., Heymsfield, S. B., Wang, Z. M., & Ross, R. (2000). Skeletal muscle mass and distribution in 468 men and women aged 18-88 yr. Journal of Applied Physiology, 89(1), 81–88. https://doi.org/10.1152/jappl.2000.89.1.81
  • Klusemann, M. J., Pyne, D. B., Hopkins, W. G., & Drinkwater, E. J. (2013). Activity profiles and demands of seasonal and tournament basketball competition. International Journal of Sports Physiology and Performance, 8(6), 623–629. https://doi.org/10.1123/ijspp.8.6.623
  • Kobal, R., Loturco, I., Barroso, R., Cuniyochi, R., Ugrinowitsch, C., Roschel, H., Tricoli, V., & Tricoli, V. (2017). Effects of different combinations of strength, power, and plyometric training on the physical performance of elite young soccer players. Journal of Strength & Conditioning Research, 31(6), 1468–1476. https://doi.org/10.1519/JSC.0000000000001609
  • Kyle, U. G., Bosaeus, I., De Lorenzo, A. D., Deurenberg, P., Elia, M., Gómez, J. M., Pirlich, M., Kent-Smith, L., Melchior, J.-C., Pirlich, M., Scharfetter, H. M. W. J., Schols, A., & Pichard, C. (2004). Bioelectrical impedance analysis—part II: utilization in clinical practice. Clinical Nutrition, 23(6), 1430–1453. https://doi.org/10.1016/j.clnu.2004.09.012
  • Leite, N., Arede, J., Shang, X., Calleja-González, J., & Lorenzo, A. (2021). The influence of contextual aspects in talent development: Interaction between relative age and birthplace effects in NBA-Drafted players. Frontiers in Sports and Active Living, 3, 642707. https://doi.org/10.3389/fspor.2021.642707
  • Lukaski, H. C., Bolonchuk, W. W., Hall, C. B., & Siders, W. A. (1986). Validation of tetrapolar bioelectrical impedance method to assess human body composition. Journal of Applied Physiology, 60(4), 1327–1332. https://doi.org/10.1152/jappl.1986.60.4.1327
  • Lukaski, H., & Raymond-Pope, C. J. (2021). New Frontiers of body composition in Sport. International Journal of Sports Medicine, 42(7), 588–601. https://doi.org/10.1055/a-1373-5881
  • Maffiuletti, N. A., Aagaard, P., Blazevich, A. J., Folland, J., Tillin, N., & Duchateau, J. (2016). Rate of force development: Physiological and methodological considerations. European Journal of Applied Physiology, 116(6), 1091–1116. https://doi.org/10.1007/s00421-016-3346-6
  • Malina, R. M., & Geithner, C. A. (2011). Body composition of young athletes. American Journal of Lifestyle Medicine, 5(3), 262–278. https://doi.org/10.1177/155982761039249
  • Markovic, G., Dizdar, D., Jukic, I., & Cardinale, M. (2004). Reliability and factorial validity of squat and countermovement jump tests. The Journal of Strength & Conditioning Research, 18(3), 551–555. https://doi.org/10.1519/1533-4287(2004)18<551:RAFVOS>2.0.CO;2
  • Matthew, D., & Delextrat, A. (2009). Heart rate, blood lactate concentration, and time–motion analysis of female basketball players during competition. Journal of Sports Sciences, 27(8), 813–821. https://doi.org/10.1080/02640410902926420
  • McKay, A. K. A., Stellingwerff, T., Smith, E. S., Martin, D. T., Mujika, I., Goosey-Tolfrey, V. L., Sheppard, J., & Burke, L. M. (2022). Defining training and performance caliber: A participant classification framework. International Journal of Sports Physiology and Performance, 17(2), 317–331. https://doi.org/10.1123/ijspp.2021-0451
  • Morrison, M., Martin, D. T., Talpey, S., Scanlan, A. T., Delaney, J., Halson, S. L., & Weakley, J. (2022). A systematic review on fitness testing in adult male basketball players: Tests adopted, characteristics reported and recommendations for practice. Sports Medicine, 52(7), 1491–1532. https://doi.org/10.1007/s40279-021-01626-3
  • Nikolaidis, P. T. (2014). Age-related differences in countermovement vertical jump in soccer players 8-31 years old: The role of fat-free mass. American Journal of Sports Science and Medicine, 2(2), 60–64. https://doi.org/10.12691/ajssm-2-2-1
  • Pehar, M., Sekulic, D., Sisic, N., Spasic, M., Uljevic, O., Krolo, A., Milanovic, Z., & Sattler, T. (2017). Evaluation of different jumping tests in defining position-specific and performance-level differences in high level basketball players. Biology of Sport, 34(3), 263–272. https://doi.org/10.5114/biolsport.2017.67122
  • Pérez-Ifrán, P., Rial, M., Brini, S., Calleja-González, J., Del Rosso, S., Boullosa, D., & Benítez-Flores, S. (2023). Change of direction performance and its physical determinants among young basketball male players. Journal of Human Kinetics, 85(1), 23–34. https://doi.org/10.2478/hukin-2022-0107
  • Petway, A. J., Freitas, T. T., Calleja-González, J., Medina Leal, D., Alcaraz, P. E., & Balsalobre-Fernández, C. (2020). Training load and match-play demands in basketball based on competition level: A systematic review. PLoS One, 15(3), e0229212. https://doi.org/10.1371/journal.pone.0229212
  • Quiterio, A. L., Carnero, E. A., Silva, A. M., Baptista, F., & Sardinha, L. B. (2009). Weekly training hours are associated with molecular and cellular body composition levels in adolescent athletes. The Journal of Sports Medicine and Physical Fitness, 49(1) , 54–63.
  • Ramos, S., Volossovitch, A., Ferreira, A. P., Fragoso, I., & Massuça, L. M. (2021). Training experience and maturational, morphological, and fitness attributes as individual performance predictors in male and female under-14 Portuguese elite basketball players. Journal of Strength & Conditioning Research, 35(7), 2025–2032. https://doi.org/10.1519/JSC.0000000000003042
  • Raymond-Pope, C. J., Solfest, A. L., Carbuhn, A., Stanforth, P. R., Oliver, J., Bach, C. W., Bosh, T., & Dengel, D. R. (2020). Total and regional body composition of NCAA division I collegiate basketball athletes. International Journal of Sports Medicine, 41(4), 242–247. https://doi.org/10.1055/a-1073-7941
  • Reeve, T. C., & Tyler, C. J. (2013). The validity of the SmartJump contact mat. Journal of Strength & Conditioning Research, 27(6), 1597–1601. https://doi.org/10.1519/JSC.0b013e318269f7f1
  • Santos, D. A., Matias, C. N., Rocha, P. M., Minderico, C. S., Allison, D. B., Sardinha, L. B., & Silva, A. M. (2014). Association of basketball season with body composition in elite junior players. The Journal of Sports Medicine and Physical Fitness, 54(2), 162–173.
  • Silva, A. M., Matias, C. N., Santos, D. A., Rocha, P. M., Minderico, C. S., & Sardinha, L. B. (2014). Increases in intracellular water explain strength and power improvements over a season. International Journal of Sports Medicine, 35(13), 1101–1105. https://doi.org/10.1055/s-0034-1371839
  • Sjøgaard, G., Adams, R. P., & Saltin, B. (1985). Water and ion shifts in skeletal muscle of humans with intense dynamic knee extension. The American Journal of Physiology, 248(2), 190–196. https://doi.org/10.1152/ajpregu.1985.248.2.R190
  • Torres-Unda, J., Zarrazquin, I., Gil, J., Ruiz, F., Irazusta, A., Kortajarena, M., Seco, J., & Irazusta, J. (2013). Anthropometric, physiological and maturational characteristics in selected elite and non-elite male adolescent basketball players. Journal of Sports Sciences, 31(2), 196–203. https://doi.org/10.1080/02640414.2012.725133
  • Walvoord, E. C. (2010). The timing of puberty: Is it changing? Does it matter? The Journal of Adolescent Health: Official Publication of the Society for Adolescent Medicine, 47(5), 433–439. https://doi.org/10.1016/j.jadohealth.2010.05.018
  • 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

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