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用于增强骨骼肌肥大和力量的周期性抗阻训练:一项小型综述。

Periodized Resistance Training for Enhancing Skeletal Muscle Hypertrophy and Strength: A Mini-Review.

作者信息

Evans Jonathan W

机构信息

University of Ottawa, Ottawa, ON, Canada.

出版信息

Front Physiol. 2019 Jan 23;10:13. doi: 10.3389/fphys.2019.00013. eCollection 2019.

Abstract

Prescribing the proper resistance training (RT) program is critical to optimize skeletal muscle hypertrophy and strength. Periodization is a strategy that entails planned manipulations of training variables to maximize fitness adaptations while minimizing the risk of overtraining. Multiple meta-analyses have shown periodized RT to be superior to non-periodized RT for enhancing muscular strength. These findings are consistent irrespective of training status or training volume. Both the linear model and the undulating model are effective for enhancing strength, although a greater benefit might be achieved through the undulating model. Despite the suggested superiority of periodized RT for strength development, some authors suggest that this might be a consequence of the study designs employed rather than the nature of periodized training. In addition, several limitations exist in the periodization literature, making it difficult to accurately assess the efficacy of periodized RT. With regard to enhancing skeletal muscle hypertrophy, both the undulating model and the linear model appear equally effective; however, this conclusion can only be generalized to untrained populations. When comparing periodized RT to non-periodized RT programs, the research is unclear on whether periodized RT is necessary to maximize skeletal muscle hypertrophy.

摘要

制定适当的抗阻训练(RT)计划对于优化骨骼肌肥大和力量至关重要。周期化是一种策略,它需要对训练变量进行有计划的调整,以最大限度地提高体能适应能力,同时将过度训练的风险降至最低。多项荟萃分析表明,周期化抗阻训练在增强肌肉力量方面优于非周期化抗阻训练。无论训练状态或训练量如何,这些结果都是一致的。线性模型和波动模型在增强力量方面都是有效的,尽管通过波动模型可能会获得更大的益处。尽管有人认为周期化抗阻训练在力量发展方面具有优势,但一些作者认为,这可能是所采用的研究设计的结果,而不是周期化训练的本质。此外,周期化文献存在一些局限性,使得难以准确评估周期化抗阻训练的效果。关于增强骨骼肌肥大,波动模型和线性模型似乎同样有效;然而,这一结论仅适用于未经训练的人群。在比较周期化抗阻训练计划和非周期化抗阻训练计划时,关于周期化抗阻训练对于最大化骨骼肌肥大是否必要的研究尚无定论。

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