Zivkovic Milena Z, Djuric Sasa, Cuk Ivan, Suzovic Dejan, Jaric Slobodan
University of Belgrade - Faculty of Sport and Physical Education, The Research Centre, Belgrade, Serbia.
College of Sports and Health, Belgrade, Serbia.
J Hum Kinet. 2017 Mar 13;56:39-49. doi: 10.1515/hukin-2017-0021. eCollection 2017 Feb.
The aims of the present study were to investigate the shape and strength of the force-velocity relationships observed in different functional movement tests and explore the parameters depicting force, velocity and power producing capacities of the tested muscles. Twelve subjects were tested on maximum performance in vertical jumps, cycling, bench press throws, and bench pulls performed against different loads. Thereafter, both the averaged and maximum force and velocity variables recorded from individual trials were used for force-velocity relationship modeling. The observed individual force-velocity relationships were exceptionally strong (median correlation coefficients ranged from r = 0.930 to r = 0.995) and approximately linear independently of the test and variable type. Most of the relationship parameters observed from the averaged and maximum force and velocity variable types were strongly related in all tests (r = 0.789-0.991), except for those in vertical jumps (r = 0.485-0.930). However, the generalizability of the force-velocity relationship parameters depicting maximum force, velocity and power of the tested muscles across different tests was inconsistent and on average moderate. We concluded that the linear force-velocity relationship model based on either maximum or averaged force-velocity data could provide the outcomes depicting force, velocity and power generating capacity of the tested muscles, although such outcomes can only be partially generalized across different muscles.
本研究的目的是调查在不同功能运动测试中观察到的力-速度关系的形状和强度,并探索描述被测肌肉的力、速度和功率产生能力的参数。对12名受试者进行了垂直跳跃、骑自行车、卧推投掷和不同负荷下的卧拉等最大表现测试。此后,将从个体试验中记录的平均力和最大力以及速度变量用于力-速度关系建模。观察到的个体力-速度关系非常强(中位数相关系数范围从r = 0.930到r = 0.995),并且与测试和变量类型无关,大致呈线性。除垂直跳跃外(r = 0.485 - 0.930),在所有测试中,从平均力和最大力以及速度变量类型中观察到的大多数关系参数都密切相关(r = 0.789 - 0.991)。然而,描述被测肌肉最大力、速度和功率的力-速度关系参数在不同测试中的可推广性不一致,平均而言适中。我们得出结论,基于最大或平均力-速度数据的线性力-速度关系模型可以提供描述被测肌肉的力、速度和功率产生能力的结果,尽管这些结果只能部分推广到不同的肌肉。