Pleša Jernej, Kozinc Žiga, Šarabon Nejc
Faculty of Health Sciences, University of Primorska, Izola, Slovenia.
Andrej Marušič Institute, University of Primorska, Koper, Slovenia.
Front Physiol. 2021 Nov 18;12:763711. doi: 10.3389/fphys.2021.763711. eCollection 2021.
The force-velocity (FV) relationship allows the identification of the mechanical capabilities of musculoskeletal system to produce force, power and velocity. The aim of this study was to assess the associations of the mechanical variables derived from the FV relationship with approach jump, linear sprint and change of direction (CoD) ability in young male volleyball players. Thirty-seven participants performed countermovement jumps with incremental loads from bodyweight to 50-100 kg (depending on the individual capabilities), 25-m sprint with split times being recorded for the purpose of FV relationship calculation, two CoD tests (505 test and modified -test) and approach jump. Results in this study show that approach jump performance seems to be influenced by maximal power output ( = 0.53) and horizontal force production ( = 0.51) in sprinting, as well as force capacity in jumping ( = 0.45). Only the FV variables obtained from sprinting alone contributed to explaining linear sprinting and CoD ability ( = 0.35-0.93). An interesting finding is that sprinting FV variables have similar and some even stronger correlation with approach jump performance than jumping FV variables, which needs to be considered for volleyball training optimization. Based on the results of this study it seems that parameters that refer to horizontal movement capacity are important for volleyball athletic performance. Further interventional studies are needed to check how to implement specific FV-profile-based training programs to improve specific mechanical capabilities that determine volleyball athletic performance and influence the specific physical performance of volleyball players.
力-速度(FV)关系有助于确定肌肉骨骼系统产生力量、功率和速度的力学能力。本研究的目的是评估从FV关系中得出的力学变量与年轻男性排球运动员的助跑跳跃、直线冲刺和变向(CoD)能力之间的关联。37名参与者进行了负重递增的反向移动跳跃,负荷从体重增加到50-100千克(取决于个人能力),进行了25米冲刺并记录分段时间以计算FV关系,进行了两项CoD测试(505测试和改良测试)以及助跑跳跃。本研究结果表明,助跑跳跃表现似乎受到短跑中最大功率输出(r = 0.53)、水平力产生(r = 0.51)以及跳跃中的力量能力(r = 0.45)的影响。仅从短跑中获得的FV变量有助于解释直线冲刺和CoD能力(r = 0.35-0.93)。一个有趣的发现是,短跑FV变量与助跑跳跃表现的相关性与跳跃FV变量相似,甚至有些更强,这在优化排球训练时需要考虑。基于本研究结果,似乎与水平运动能力相关的参数对排球运动表现很重要。需要进一步的干预研究来检验如何实施基于特定FV特征的训练计划,以提高决定排球运动表现并影响排球运动员特定身体表现的特定力学能力。