Van Hooren Bas, Bosch Frans, Meijer Kenneth
1Institute of Sports, Fontys University of Applied Sciences, Eindhoven, the Netherlands; and2Department of Human Movement Sciences, NUTRIM School of Nutrition and Translational Research in Metabolism, Maastricht University Medical Center+, Maastricht, the Netherlands.
J Strength Cond Res. 2017 Aug;31(8):2324-2337. doi: 10.1519/JSC.0000000000001916.
Van Hooren, B, Bosch, F, and Meijer, K. Can resistance training enhance the rapid force development in unloaded dynamic isoinertial multi-joint movements? A systematic review. J Strength Cond Res 31(8): 2324-2337, 2017-The objectives of this systematic review were to (a) evaluate whether resistance training can improve the rapid force development in unloaded dynamic isoinertial multi-joint movements and (b) investigate whether these effects differ between untrained/recreationally trained and well-trained individuals. Four electronic databases were screened for studies that measured the effects of resistance training on rapid force development in unloaded dynamic isoinertial multi-joint movements. Twelve studies with a total of 271 participants were included. 10/26 (38%) and 6/14 (43%) of the measures of rapid force development in unloaded dynamic isoinertial multi-joint movements significantly improved following training in the untrained/recreationally trained and well-trained individuals, respectively. Additionally, 7/14 (50%) and 3/12 (25%) of the measures significantly improved during a countermovement and squat jump in the untrained/recreationally trained individuals and 4/6 (67%) and 2/8 (25%) significantly improved during a countermovement and squat jump in the well-trained individuals, respectively. These findings indicate that resistance training has a limited transfer to rapid force development in unloaded dynamic isoinertial multi-joint movements, especially for well-trained individuals and in movements without a countermovement. Furthermore, rapid force development has likely a limited transfer from movements with countermovement to movements without a countermovement and from bilateral movements to unilateral movements. Therefore, it is important to specifically mimic the actual sport movement in order to maximize the transfer of training and testing.
范霍伦,B、博施,F和梅杰,K。抗阻训练能否增强无负荷动态等惯性多关节运动中的快速力量发展?一项系统综述。《力量与体能研究杂志》31(8): 2324 - 2337,2017年。本系统综述的目的是:(a)评估抗阻训练是否能改善无负荷动态等惯性多关节运动中的快速力量发展;(b)研究这些效果在未经训练/业余训练者和训练有素者之间是否存在差异。对四个电子数据库进行筛选,以查找测量抗阻训练对无负荷动态等惯性多关节运动中快速力量发展影响的研究。共纳入12项研究,涉及271名参与者。在未经训练/业余训练者和训练有素者中,分别有10/26(38%)和6/14(43%)的无负荷动态等惯性多关节运动快速力量发展指标在训练后显著改善。此外,在未经训练/业余训练者的反向运动和深蹲跳中,分别有7/14(50%)和3/12(25%)的指标显著改善;在训练有素者的反向运动和深蹲跳中,分别有4/6(67%)和2/8(25%)的指标显著改善。这些发现表明,抗阻训练对无负荷动态等惯性多关节运动中快速力量发展的迁移作用有限,尤其是对训练有素者以及在没有反向运动的动作中。此外,快速力量发展从有反向运动的动作向没有反向运动的动作、从双侧动作向单侧动作的迁移可能也很有限。因此,为了最大限度地实现训练和测试的迁移,专门模拟实际运动项目很重要。