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Implementing Eccentric Resistance Training—Part 1: A Brief Review of Existing Methods

机译:实施偏心电阻训练 - 第1部分:对现有方法进行简要审查

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摘要

The purpose of this review was to provide a physiological rationale for the use of eccentric resistance training and to provide an overview of the most commonly prescribed eccentric training methods. Based on the existing literature, there is a strong physiological rationale for the incorporation of eccentric training into a training program for an individual seeking to maximize muscle size, strength, and power. Specific adaptations may include an increase in muscle cross-sectional area, force output, and fiber shortening velocities, all of which have the potential to benefit power production characteristics. Tempo eccentric training, flywheel inertial training, accentuated eccentric loading, and plyometric training are commonly implemented in applied contexts. These methods tend to involve different force absorption characteristics and thus, overload the muscle or musculotendinous unit in different ways during lengthening actions. For this reason, they may produce different magnitudes of improvement in hypertrophy, strength, and power. The constraints to which they are implemented can have a marked effect on the characteristics of force absorption and therefore, could affect the nature of the adaptive response. However, the versatility of the constraints when prescribing these methods mean that they can be effectively implemented to induce these adaptations within a variety of populations.
机译:本评价的目的是提供用于使用偏心抗性培训的生理学理由,并提供最常见规定的偏心训练方法的概述。基于现有文献,存在强烈的生理基本理由,将古怪训练纳入培训计划中,以便为个人寻求最大化肌肉大小,力量和力量。具体适应可包括肌肉横截面积,力输出和纤维缩短速度的增加,所有这些都具有潜在的效益电力生产特性。速度偏心训练,飞轮惯性训练,突出的偏心载荷和锭素训练通常在应用的背景下实施。这些方法倾向于涉及不同的力吸收特性,从而延长延长行动期间以不同方式超载肌肉或肌肉状单位。因此,它们可能产生不同的肥大,强度和功率的改善大小。它们所实施的约束可以对力吸收的特征具有显着影响,因此可能影响自适应响应的性质。然而,在规定这些方法时约束的多功能性意味着它们可以有效地实施,以诱导各种群体内的这些改编。

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