Stable vs. variable eccentric load. Do they induce different training and physical performance outcomes?

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-09-01 Epub Date: 2022-09-12 DOI:10.1080/17461391.2022.2118081
Carlos Galiano, Pablo Floria, Alejandro Muñoz-López, Eduardo Sáez de Villarreal, Francisco Javier Nuñez
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Abstract

Since most movements on the field require athletes to produce forces in variable and unpredictable contexts, the use of training programs based on identical repetitions of an exercise may not be optimal for movement transference. Therefore, the aim of this study was to analyse the effects of unexpected eccentric load variability during resistance training in team sport players. Sixty-three men were randomly allocated to two experimental groups (Variable (VTG) and stable (STG) training group) and control group: (CG) volunteered to participate in this study. Experimental groups trained with the same average load of half-squat exercise twice a week for six weeks using rotary inertial devices (RIDs) with (VTG) and without (STG) an unexpected variability of the load. The squat force was measured for every session with force plates. Counter-movement jump (CMJ), sprint, and change of direction performances were measured pre and post-test. CMJ performance improved for VTG (p = .014; ES = 0.7) and STG (p = .005; ES = 0.79) but not for CG. Exposure to high eccentric forces with RIDs lead athletes to improve physical performance in the trained force vector but, since RIDs induce in high levels of variability per se, increasing the level of variability of the exercise will not add benefits to physical performance and training outcomes.HIGHLIGHTSThe relevance of the study is to analyse if increasing the variability of the load will improve the athlete output to different physical performance tests.The exposure to eccentric overload with RIDs during the squat exercise allows to greater CMJ height improvements than those seen in the literature with RIDs without overloading the eccentric contraction.RIDs induce in high level of variability per se. Therefore, increasing the level of variability of the exercise will not add benefits to physical performance and training outcomes.

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稳定与可变偏心负载。它们是否会导致不同的训练和体能表现结果?
由于赛场上的大多数动作都需要运动员在可变和不可预测的环境中产生力量,因此使用基于相同重复训练的训练计划可能不是运动转移的最佳选择。因此,本研究的目的是分析团队运动运动员在阻力训练中意外偏心负荷变化的影响。63名男性被随机分配到两个实验组(可变(VTG)和稳定(STG)训练组)和对照组:(CG)自愿参与本研究。实验组使用旋转惯性装置(RID)以相同的平均负荷进行训练,每周两次,持续六周,其中(VTG)和(STG)负荷存在意外变化。每次使用测力板测量深蹲力。在测试前和测试后分别测量反动作跳跃(CMJ)、冲刺和方向改变的表现。VTG(p = .014;ES = 0.7)和STG(p = .005;ES = 0.79),但不适用于CG。RID暴露于高偏心力会导致运动员在训练的力向量中提高身体表现,但由于RID本身会导致高水平的可变性,增加运动的可变性水平不会增加身体表现和训练结果的好处。重点:该研究的相关性是分析增加负荷的可变性是否会提高运动员对不同身体表现测试的输出。在深蹲运动过程中,在不使偏心收缩过载的情况下,与文献中的RID相比,RID暴露于偏心超负荷可以使CMJ高度得到更大的改善。RID本身会导致高水平的可变性。因此,增加运动的可变性水平不会增加对身体表现和训练结果的益处。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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