Human Performance Laboratory, Department of Physical Education, São Paulo State University, Rio Claro, São Paulo, Brazil.
Eur J Appl Physiol. 2021 Feb;121(2):381-407. doi: 10.1007/s00421-020-04548-6. Epub 2020 Nov 12.
There is a profound gap in the understanding of the eccentric cycling intensity continuum, which prevents accurate exercise prescription based on desired physiological responses. This may underestimate the applicability of eccentric cycling for different training purposes. Thus, we aimed to summarize recent research findings and screen for possible new approaches in the prescription and investigation of eccentric cycling.
A search for the most relevant and state-of-the-art literature on eccentric cycling was conducted on the PubMed database. Literature from reference lists was also included when relevant.
Transversal studies present comparisons between physiological responses to eccentric and concentric cycling, performed at the same absolute power output or metabolic load. Longitudinal studies evaluate responses to eccentric cycling training by comparing them with concentric cycling and resistance training outcomes. Only one study investigated maximal eccentric cycling capacity and there are no investigations on physiological thresholds and/or exercise intensity domains during eccentric cycling. No study investigated different protocols of eccentric cycling training and the chronic effects of different load configurations.
Describing physiological responses to eccentric cycling based on its maximal exercise capacity may be a better way to understand it. The available evidence indicates that clinical populations may benefit from improvements in aerobic power/capacity, exercise tolerance, strength and muscle mass, while healthy and trained individuals may require different eccentric cycling training approaches to benefit from similar improvements. There is limited evidence regarding the mechanisms of acute physiological and chronic adaptive responses to eccentric cycling.
人们对离心运动强度连续体的理解存在严重差距,这使得基于期望的生理反应来准确进行运动处方制定变得困难。这可能低估了离心运动在不同训练目的中的适用性。因此,我们旨在总结最近的研究结果,并筛选离心运动处方和研究中可能的新方法。
在 PubMed 数据库中搜索关于离心运动的最相关和最先进的文献。当相关时,也包括参考文献中的文献。
横断面研究比较了在相同绝对功率输出或代谢负荷下进行的离心和向心运动的生理反应。纵向研究通过将离心运动训练的反应与向心运动和抗阻运动的结果进行比较来评估对离心运动训练的反应。只有一项研究调查了最大离心运动能力,并且没有关于离心运动过程中的生理阈值和/或运动强度范围的研究。没有研究调查不同的离心运动训练方案以及不同负荷配置的慢性影响。
根据离心运动的最大运动能力来描述其对生理的反应可能是更好的理解方式。现有证据表明,临床人群可能受益于有氧能力/容量、运动耐量、力量和肌肉质量的提高,而健康和训练有素的个体可能需要不同的离心运动训练方法才能从类似的改善中受益。关于离心运动的急性生理和慢性适应反应的机制证据有限。