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Differences in external load among indoor and beach volleyball players during elite matches

. 2024 ; 12 () : e16736. [epub] 20240102

Language English Country United States Media electronic-ecollection

Document type Journal Article

The aim of this cross-sectional study was to examine relationships of external load variables between beach and indoor volleyball amongst individual positions on the team. The movements of eight beach and fourteen indoor female volleyball players were recorded during elite playoff matches; in total, 2,336 three-dimensional trajectories were analyzed. Time-outs and intervals between rallies or sets were excluded from active play time. In both beach and indoor volleyball, 80% of rallies lasted up to 10 s, and players covered 4.5 to 10 m of court during 60% of rally play. Differences in dependent variables of external load were found between independent variables of sports and player positions (p < 0.05). The distance covered in beach volleyball rallies and Player Load™ parameters was significantly higher by up to 23%. The unstable court surface with sand in beach volleyball elevated explosive Player Load™ (accelerations in all three orthogonal planes of motion higher than 3.5 m/s3) in beach volleyball players compared to those of players on stable flooring in indoor. While beach volleyball blocker and defender positions showed no significant difference in parameters between each other, they differed in all parameters when compared to player positions in indoor volleyball. Indoor blocker and libero reached higher loads than setter, outside and opposite positions in various parameters. Factors that influence external load include the larger relative court areas covered by each player in beach volleyball, complexity of players' roles, and game strategy. This data adds to the knowledge of elite match demands in female volleyball. Specified agility-drill distances and times are essential for training optimization and must be supported by scientific observation. Researchers, coaches, and conditioning specialists should find this helpful for achieving a higher degree of training regulation.

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Altundag E, Akyildiz Z, Lima R, Castro HD, Cene E, Akarcesme C, Miale G, Clemente FM. Relationships between internal and external training load demands and match load demands in elite women volleyball players. [Epub ahead of print 25 May 2022] Proceedings of the Institution of Mechanical Engineers Part P-Journal of Sports Engineering and Technology. 2022 doi: 10.1177/17543371221101233. DOI

Balasas DG, Christoulas K, Stefanidis P, Vamvakoudis E, Bampouras TM. The effect of beach volleyball training on muscle performance of indoor volleyball players. The Journal of Sports Medicine and Physical Fitness. 2018;58(9):1240–1246. doi: 10.23736/S0022-4707.17.07162-6. PubMed DOI

Bellinger PM, Newans T, Whalen M, Minahan C. Quantifying the activity profile of female beach volleyball tournament match-play. Journal of Sports Science and Medicine. 2021;20:142–148. doi: 10.52082/jssm.2021.142. PubMed DOI PMC

Binnie MJ, Dawson B, Arnot MA, Pinnington H, Landers G, Peeling P. Effect of sand versus grass training surfaces during an 8-week pre-season conditioning programme in team sport athletes. Journal of Sports Sciences. 2014;32(11):1001–1012. doi: 10.1080/02640414.2013.879333. PubMed DOI

Blair JL. Master’s thesis, University of Alberta; Alberta, Canada: 2014. Time-motion analysis and heart rate response in university women’s volleyball: a descriptive study.

Bredt S, Chagas MH, Peixoto GH, Menzel HJ, de Andrade AGP. Understanding player load: meanings and limitations. Journal of Human Kinetics. 2020;71(1):5–9. doi: 10.2478/hukin-2019-0072. PubMed DOI PMC

Clemente FM, Rabbani A, Conte D, Castillo D, Afonso J, Truman Clark CC, Nikolaidis PT, Rosemann T, Knechtle B. Training/Match external load ratios in professional soccer players: a full-season study. International Journal of Environmental Research and Public Health. 2019;16(17):3057. doi: 10.3390/ijerph16173057. PubMed DOI PMC

Cohen J. A power primer. Psychological Bulletin. 1992;112(1):155–159. doi: 10.1037/0033-2909.112.1.155. PubMed DOI

Cressey EM, West CA, Tiberio DP, Kraemer WJ, Maresh CM. The effects of ten weeks of lower-body unstable surface training on markers of athletic performance. The Journal of Strength and Conditioning Research. 2007;21(2):561–567. doi: 10.1519/R-19845.1. PubMed DOI

Davies SE, Mackinnon SN. The energetics of walking on sand and grass at various speeds. Ergonomics. 2006;49(7):651–660. doi: 10.1080/00140130600558023. PubMed DOI

de Volleyball FI. Official volleyball rules 2017–2020: approved by the 35th FIVB congress 2016. 2016. http://www.fivb.org/EN/Refereeing-Rules/documents/FIVB-Volleyball_Rules_2017-2020-EN-v06.pdf http://www.fivb.org/EN/Refereeing-Rules/documents/FIVB-Volleyball_Rules_2017-2020-EN-v06.pdf FIVB.

Ekstrand J, Timpka T, Hagglund M. Risk of injury in elite football played on artificial turf versus natural grass: a prospective two-cohort study. British Journal of Sports Medicine. 2006;40(12):975–980. doi: 10.1136/bjsm.2006.027623. PubMed DOI PMC

Faul F, Erdfelder E, Lang A-G, Buchner A. G* Power 3: a flexible statistical power analysis program for the social, behavioral, and biomedical sciences. Behavior Research Methods. 2007;39(2):175–191. doi: 10.3758/BF03193146. PubMed DOI

FIVB Picture of the game-2016. 2022. https://www.fivb.com/-/media/2023/volleyball/picture%20of%20the%20game%202022%20report/2022%20picture_of_the_game_report%20%20final.pdf?la=en https://www.fivb.com/-/media/2023/volleyball/picture%20of%20the%20game%202022%20report/2022%20picture_of_the_game_report%20%20final.pdf?la=en

Fuchs PX, Menzel HK, Guidotti F, Bell J, von Duvillard SP, Wagner H. Spike jump biomechanics in male versus female elite volleyball players. Journal of Sports Sciences. 2019;37(21):2411–2419. doi: 10.1080/02640414.2019.1639437. PubMed DOI

Gabbett TJ. Debunking the myths about training load, injury and performance: empirical evidence, hot topics and recommendations for practitioners. British Journal of Sports Medicine. 2020;54(1):58–66. doi: 10.1136/bjsports-2018-099784. PubMed DOI

García-de-Alcaraz A, Ramírez-Campillo R, Rivera-Rodríguez M, Romero-Moraleda B. Analysis of jump load during a volleyball season in terms of player role. Journal of Science and Medicine in Sport. 2020;23(10):973–978. doi: 10.1016/j.jsams.2020.03.002. PubMed DOI

Giatsis G, Panoutsakopoulos V, Kollias IA. Biomechanical differences of arm swing countermovement jumps on sand and rigid surface performed by elite beach volleyball players. Journal of Sports Sciences. 2018;36(9):997–1008. doi: 10.1080/02640414.2017.1348614. PubMed DOI

Giatsis G, Papadopoulou S. Effects of reduction in dimensions of the court on timing characteristics for men’s beach volleyball matches. International Journal of Volleyball Research. 2003;6:6–9.

Hader K, Rumpf MC, Hertzog M, Kilduff LP, Girard O, Silva JR. Monitoring the athlete match response: can external load variables predict post-match acute and residual fatigue in soccer? A systematic review with meta-analysis. Sports Medicine-Open. 2019;5(1):48. doi: 10.1186/s40798-019-0219-7. PubMed DOI PMC

Hank M, Malý T, Zahálka F, Dragijský M, Bujnovský D. Evaluation of the horizontal movement distance of elite female beach volleyball players during an official match. International Journal of Performance Analysis in Sport. 2017;16(3):1087–1101. doi: 10.1080/24748668.2016.11868950. DOI

Impellizzeri FM, Rampinini E, Castagna C, Martino F, Fiorini S, Wisloff U. Effect of plyometric training on sand versus grass on muscle soreness and jumping and sprinting ability in soccer players. British Journal of Sports Medicine. 2008;42(1):42–46. doi: 10.1136/bjsm.2007.038497. PubMed DOI

Inkinen V, Häyrinen M, Linnamo V. Technical and tactical analysis of women’s volleyball. Biomedical Human Kinetics. 2013;5(1):43–50. doi: 10.2478/bhk-2013-0007. DOI

Jerome GJ, Boyer WR, Bustamante EE, Kariuki J, Lopez-Jimenez F, Paluch AE, Swift DL, Webber-Ritchey KJ, Barone Gibbs B. Increasing equity of physical activity promotion for optimal cardiovascular health in adults: a scientific statement from the American heart association. Circulation. 2023;147(25):1951–1962. doi: 10.1161/CIR.0000000000001148. PubMed DOI

Jimenez-Olmedo JM, Pueo B, Penichet-Tomas A, Chinchilla-Mira JJ, Perez-Turpin JA. Physiological work areas in professional beach volleyball: a case study. Retos-Nuevas Tendencias En Educacion Fisica Deporte Y Recreacion. 2017:94–97.

João PV, Medeiros A, Ortigão H, Lee M, Mota MP. Global position analysis during official elite female beach volleyball competition: a pilot study. Applied Sciences. 2021;11(20):9382. doi: 10.3390/app11209382. DOI

Junior N. Specific periodization for the volleyball: a training organization. MOJ Sports Medicine. 2018;2:108–111. doi: 10.15406/mojsm.2018.02.00056. DOI

Karalić T, Vujmilović A, Gerdijan N. Relations of body dimensions and specific motor abilities of female volleyball players in relation to the playing position. Sports Science and Health. 2023;25:104–110. doi: 10.7251/SSH2301104K. DOI

Knobloch K, Yoon U, Vogt PM. Acute and overuse injuries correlated to hours of training in master running athletes. Foot & Ankle International. 2008;29(7):671–676. doi: 10.3113/FAI.2008.0671. PubMed DOI

Koch C, Tilp M. Beach volleyball techniques and tactics: a comparison of male and female playing characteristics. Kinesiology. 2009;41:52–59.

Lidor R, Ziv G. Physical and physiological attributes of female volleyball players—a review. The Journal of Strength and Conditioning Research. 2010;24(7):1963–1973. doi: 10.1519/JSC.0b013e3181ddf835. PubMed DOI

Lupo C, Ungureanu AN, Brustio PR. Session-Rpe is a valuable internal load evaluation method in beach volleyball for both genders, elite and amateur players, conditioning and technical sessions, but limited for tactical training and games. Kinesiology. 2020;52(1):30–38. doi: 10.26582/k.52.1.4. DOI

Marques MC, van den Tillaar R, Gabbett TJ, Reis VM, Gonzalez-Badillo JJ. Physical fitness qualities of professional volleyball players: determination of positional differences. The Journal of Strength and Conditioning Research. 2009;23(4):1106–1111. doi: 10.1519/JSC.0b013e31819b78c4. PubMed DOI

McKay AK, Stellingwerff T, Smith ES, Martin DT, Mujika I, Goosey-Tolfrey VL, Burke LM. Defining training and performance caliber: a participant classification framework. International Journal of Sports Physiology and Performance. 2021;17(2):317–331. doi: 10.1123/ijspp.2021-0451. PubMed DOI

McLaren SJ, Macpherson TW, Coutts AJ, Hurst C, Spears IR, Weston M. The relationships between internal and external measures of training load and intensity in team sports: a meta-analysis. Sports Medicine. 2018;48(3):641–658. doi: 10.1007/s40279-017-0830-z. PubMed DOI

Mroczek D, Januszkiewicz A, Kawczynski AS, Borysiuk Z, Chmura J. Analysis of male volleyball players’ motor activities during a top level match. The Journal of Strength and Conditioning Research. 2014;28(8):2297–2305. doi: 10.1519/JSC.0000000000000425. PubMed DOI

Natali S, Ferioli D, La Torre A, Bonato M. Physical and technical demands of elite beach volleyball according to playing position and gender. The Journal of Sports Medicine and Physical Fitness. 2017;59(1):6–9. doi: 10.23736/S0022-4707.17.07972-5. PubMed DOI

Nicolella DP, Torres-Ronda L, Saylor KJ, Schelling X. Validity and reliability of an accelerometer-based player tracking device. PLOS ONE. 2018;13(2):e0191823. doi: 10.1371/journal.pone.0191823. PubMed DOI PMC

Nikos B, Karolina B, Elissavet NM. Performance of male and female setters and attackers on Olympic-level volleyball teams. International Journal of Performance Analysis in Sport. 2009;9(1):141–148. doi: 10.1080/24748668.2009.11868470. DOI

Noce F, dos Santos IC, Samulski DM, de Carvalho SLF, dos Santos RVT, de Mello MT. Monitoring levels of stress and overtraining in an elite Brazilian female volleyball athlete: case study. Revista de Psicología del Deporte. 2008;17:25–41.

Nunes RF, Carvalho RR, Palermo L, Souza MP, Char M, Nakamura FY. Match analysis and heart rate of top-level female beach volleyball players during international and national competitions. The Journal of Sports Medicine and Physical Fitness. 2020;60(2):189–197. doi: 10.23736/S0022-4707.19.10042-4. PubMed DOI

Oliveira WK, de Jesus K, Andrade AD, Nakamura FY, Assumpção CO, Medeiros AI. Monitoring training load in beach volleyball players: a case study with an Olympic team. Motriz: Revista de Educação Física. 2018;24(1):658. doi: 10.1590/s1980-6574201800010004. DOI

Osgnach C, Poser S, Bernardini R, Rinaldo R, Di Prampero PE. Energy cost and metabolic power in elite soccer: a new match analysis approach. Medicine and Science in Sports Exercise. 2010;42(1):170–178. doi: 10.1249/MSS.0b013e3181ae5cfd. PubMed DOI

Palao JM, Gutierrez D, Frideres JE. Height, weight, body mass index, and age in beach volleyball players in relation to level and position. The Journal of Sports Medicine and Physical Fitness. 2008;48:466–471. PubMed

Palao JM, López-Martínez AB, Valadés D, Ortega E. Physical actions and work-rest time in women’s beach volleyball. International Journal of Performance Analysis in Sport. 2015;15(1):424–429. doi: 10.1080/24748668.2015.11868803. DOI

Palao JM, Manzanares P, Valades D. Anthropometric, physical, and age differences by the player position and the performance level in volleyball. Journal of Human Kinetics. 2014;44(1):223–236. doi: 10.2478/hukin-2014-0128. PubMed DOI PMC

Pelzer T, Schmidt M, Jaitner T, Pfeiffer M. External training load and the effects on training response following three different training sessions in young elite beach volleyball players. International Journal of Sports Science & Coaching. 2020;15(5–6):717–727. doi: 10.1177/1747954120940488. DOI

Pinnington HC, Dawson B. Running economy of elite surf iron men and male runners, on soft dry beach sand and grass. European Journal of Applied Physiology. 2001;86(1):62–70. doi: 10.1007/s004210100472. PubMed DOI

Pisa MF, Zecchin AM, Gomes LG, Puggina EF. External load in male professional volleyball: a systematic review. Baltic Journal of Health and Physical Activity. 2022;14(2):7. doi: 10.29359/BJHPA.14.2.07. PubMed DOI

Reeser JC, Verhagen E, Briner WW, Askeland TI, Bahr R. Strategies for the prevention of volleyball related injuries. British Journal of Sports Medicine. 2006;40(7):594–600. doi: 10.1136/bjsm.2005.018234. PubMed DOI PMC

Rico-González M, Los Arcos A, Nakamura FY, Gantois P, Pino-Ortega J. A comparison between UWB and GPS devices in the measurement of external load and collective tactical behaviour variables during a professional official match. International Journal of Performance Analysis in Sport. 2020;20(6):994–1002. doi: 10.1080/24748668.2020.1823153. DOI

Sánchez-Moreno J, Afonso J, Mesquita I, Ureña A. Dynamics between playing activities and rest time in high-level men’s volleyball. International Journal of Performance Analysis in Sport. 2016;16(1):317–331. doi: 10.1080/24748668.2016.11868889. DOI

Salerno P, Possenti R, Correale L, Buzzachera CF, Zanetti C. The use of the parachute for improving sprinting performance in non-elite sprinters: a preliminary study. Small. 2023;1:3–12.

Schaal M, Ransdell LB, Simonson SR, Gao Y. Physiologic performance test differences in female volleyball athletes by competition level and player position. The Journal of Strength and Conditioning Research. 2013;27(7):1841–1850. doi: 10.1519/JSC.0b013e31827361c4. PubMed DOI

Schelling X, Torres L. Accelerometer load profiles for basketball-specific drills in elite players. Journal of Sports Science & Medicine. 2016;15:585–591. PubMed PMC

Sheppard JM, Cronin JB, Gabbett TJ, McGuigan MR, Etxebarria N, Newton RU. Relative importance of strength, power, and anthropometric measures to jump performance of elite volleyball players. The Journal of Strength & Conditioning Research. 2008;22(3):758–765. doi: 10.1519/JSC.0b013e31816a8440. PubMed DOI

Sheppard JM, Gabbett T, Riggs MP. Indoor and beach volleyball players. Champaign: Human Kinetics Publishers; 2012.

Sheppard JM, Gabbett TJ, Stanganelli LC. An analysis of playing positions in elite men’s volleyball: considerations for competition demands and physiologic characteristics. The Journal of Strength and Conditioning Research. 2009;23(6):1858–1866. doi: 10.1519/JSC.0b013e3181b45c6a. PubMed DOI

Skazalski C, Whiteley R, Bahr R. High jump demands in professional volleyball—large variability exists between players and player positions. Scandinavian Journal of Medicine & Science in Sports. 2018;28(11):2293–2298. doi: 10.1111/sms.13255. PubMed DOI

Smith R. Movement in the sand: training implications for beach volleyball. Strength and Conditioning Journal. 2006;28(5):19–21. doi: 10.1519/00126548-200610000-00002. DOI

Visnes H, Bahr R. Training volume and body composition as risk factors for developing jumper’s knee among young elite volleyball players. Scandinavian Journal of Medicine & Science in Sports. 2013;23(5):607–613. doi: 10.1111/j.1600-0838.2011.01430.x. PubMed DOI

Vlantes TG, Readdy T. Using microsensor technology to quantify match demands in collegiate women’s volleyball. The Journal of Strength and Conditioning Research. 2017;31(12):3266–3278. doi: 10.1519/JSC.0000000000002208. PubMed DOI

Wang S, Yuan F. On the development of volleyball from the change of volleyball rules. International Conference of Sports Science-AESA; 2022. p. 29.

Wik EH, Luteberget LS, Spencer M. Activity profiles in international women’s team handball using PlayerLoad. International Journal of Sports Physiology and Performance. 2017;12(7):934–942. doi: 10.1123/ijspp.2015-0732. PubMed DOI

Wundersitz DW, Gastin PB, Richter C, Robertson SJ, Netto KJ. Validity of a trunk-mounted accelerometer to assess peak accelerations during walking, jogging and running. European Journal of Sport Science. 2015;15(5):382–390. doi: 10.1080/17461391.2014.955131. PubMed DOI

Zamparo P, Perini R, Orizio C, Sacher M, Ferretti G. The energy cost of walking or running on sand. European Journal of Applied Physiology and Occupational Physiology. 1992;65(2):183–187. doi: 10.1007/BF00705078. PubMed DOI

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