首页> 外文期刊>Journal of strength and conditioning research >Common variants of the resistance mechanism in the Smith machine: analysis of mechanical loading characteristics and application to strength-oriented and hypertrophy-oriented training.
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Common variants of the resistance mechanism in the Smith machine: analysis of mechanical loading characteristics and application to strength-oriented and hypertrophy-oriented training.

机译:Smith机器中阻力机制的常见变体:机械负载特性分析及其在以力量为导向和以肥大为导向的训练中的应用。

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摘要

The Smith machine is a pervasive weight-training apparatus, used extensively by a wide population of weight trainers, from novices to high-level athletes. The advantages of using a Smith machine over free-weight resistance are disputed, with conflicting findings reported in the literature. In this study, we are interested in practical differences between 3 types of loading mechanisms found in modern Smith machines. In addition to the basic design comprising a constrained weighted barbell, alterations with a counterweight and a viscous resistance component are examined. The approach taken is that of employing a recently proposed representation of force characteristics that may be exhibited by a trainee and a predictive model of thus effected adaptation. A computer simulation is used to predict the effects of the 3 linear Smith machine designs in the framework of different exercise protocols. Our results demonstrate that each resistance component, vertically constrained load, counterweight, and viscous, can be matched with a particular training context, in which it should be preferred. Thus, a number of practical guidelines for weight-training practitioners are recommended. In summary, (a) at low intensities (55-75% of 1 repetition maximum [1RM]) used in strength-endurance training, a viscous resistance containing the Smith machine was found to offer advantages over both a constrained load only and counterweighted designs; (b) at medium intensities (75-85% of 1RM) typically employed in hypertrophy-specific training, the counterweighted Smith machine design was found to offer the best choice in terms of high-force development and total external work performed; finally, (c) at high training intensity (90-100% of 1RM), the optimal prescription was found to be more dependent on the specific athlete's weaknesses, highlighting the need for continual monitoring of the athlete's force production capabilities. To ensure that appropriate adjustments are made to the athlete's training regimen, the practitioner should consider the full set of findings of this article and the accompanying discussion.
机译:Smith机器是一种普及型的重量训练器械,从新手到高级运动员,都被广泛的重量训练者广泛使用。使用史密斯机器优于抗自由重量的优势是有争议的,文献中报道了相矛盾的发现。在这项研究中,我们对现代史密斯机器中发现的三种加载机制之间的实际差异感兴趣。除了包括受约束的加权杠铃的基本设计外,还检查了配重和粘性阻力分量的变化。所采用的方法是采用受训者可能表现出的力量特征的最新提议表示形式以及由此实现的适应性的预测模型。在不同运动方案的框架内,使用计算机仿真来预测3种线性Smith机器设计的效果。我们的结果表明,每个阻力分量,垂直约束的载荷,配重和粘性都可以与特定的训练环境相匹配,在这种情况下应优先选用。因此,推荐了许多针对体重训练从业者的实用指南。总之,(a)在强度-耐力训练中使用的低强度(1次重复最大值[1RM]的55-75%)下,发现包含Smith机的粘性阻力比仅受约束的载荷和配重设计更具优势; (b)在肥大特定训练中通常使用的中等强度(1RM的75-85%)下,史密斯配重机器设计被发现在高力量发展和完成的全部外部工作方面提供了最佳选择;最后,(c)在高训练强度下(1RM的90-100%),最佳处方被发现更多地取决于特定运动员的弱点,这凸显了持续监控运动员力量产生能力的必要性。为确保对运动员的训练方案进行适当的调整,从业人员应考虑本文和随附讨论的全部发现。

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