Buśko Krzysztof, Górski Michał, Nikolaidis Pantelis Theodoros, Mazur-Różycka Joanna, Łach Patrycja, Staniak Zbigniew, Gajewski Jan
Department of Anatomy and Biomechanics, Kazimierz Wielki University, Bydgoszcz, Poland.
Department of Biomechanics, Institute of Sport - National Research Institute, Warsaw, Poland.
Acta Bioeng Biomech. 2018;20(2):109-116.
The main goal of the present study was to examine muscle strength and power of dominant and non-dominant leg, knee extensors and flexors, and their correlations with jumping performances in soccer players. A secondary aim was to evaluate muscle sense.
31 male professional strikers (age 20.9 ± 2.3 years, body mass 75.1 ± 6.6 kg, body height 179.5 ± 4.7 cm) participated in the study. The power output of lower extremities and the height of rise of the body mass centre during vertical jumps were measured using a force plate. The maximum muscle torque of the flexors and extensors of the knee were measured under isometric conditions using a special isometric torquemeter. Force sense was measured in isometric conditions in two tests: (a) fifty percent of the maximal voluntary contraction was set as a value of target force and the participants were instructed to reproduce the target force, (b) the participants attempted to develop a torque reproducing a sine course within the range of 10 to 50% of MVC performed.
A direct relationship was observed between the peak muscle torque in knee extensors developed during isokinetic contraction at all velocities and power and height of three types of vertical jumps ( p <0.05). No correlation was observed between jumping performance and muscle torque under isometric condition. No differences were found in strength and jumping abilities as well as in force sense between dominant and non-dominant legs.
This study offered a comprehensive and complete evaluation of leg muscle strength, sense and power, with the use of using force plate and isokinetic dynamometry.
本研究的主要目标是检测足球运动员优势腿和非优势腿、膝关节伸肌和屈肌的肌力与功率,以及它们与跳跃表现的相关性。次要目的是评估肌肉感觉。
31名男性职业前锋(年龄20.9±2.3岁,体重75.1±6.6 kg,身高179.5±4.7 cm)参与了本研究。使用测力板测量下肢的功率输出以及垂直跳跃过程中身体重心的上升高度。使用特殊的等长扭矩计在等长条件下测量膝关节屈肌和伸肌的最大肌肉扭矩。在等长条件下通过两项测试测量力觉:(a)将最大自主收缩的50%设定为目标力值,并指导参与者重现目标力,(b)参与者尝试产生一个在最大自主收缩10%至50%范围内重现正弦曲线的扭矩。
在所有速度下的等速收缩过程中,膝关节伸肌产生的峰值肌肉扭矩与三种垂直跳跃的功率和高度之间存在直接关系(p<0.05)。在等长条件下,跳跃表现与肌肉扭矩之间未观察到相关性。优势腿和非优势腿在力量、跳跃能力以及力觉方面均未发现差异。
本研究通过使用测力板和等速测力法,对腿部肌肉力量、感觉和功率进行了全面且完整的评估。