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The development and origin of muscle fatigue after hexagonal-barbell deadlift exercise of different loads and velocities: contributing to a knowledge-base for coaches to make evidence-informed decisions regarding athletic training programmes

机译:不同负荷和速度的六角杠铃硬拉运动后肌肉疲劳的发展和起源:为教练提供知识基础以做出关于体育训练计划的有依据的决策

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摘要

Athletes perform bouts of resistance exercise to develop athletic performance and reduce the risk of injury. Fatigue in response to exercise can be associated with alterations to voluntary muscle activation or contractile function. Recent literature has proposed terms of performance fatigability and perceived fatigability to better describe the broad interpretation of fatigue during human performance. Accordingly, performance fatigability depends on the capabilities of the contractile machinery and nervous system to provide adequate activation signal to maintain the task. ududThe rationale for the experimental chapters in this thesis was established after conducting a review of the literature relating to fatigue and human performance (chapter 2). This review highlighted that studies of performance fatigability have generally focused on locomotor exercise such as running or cycling. However, very little work has examined the influence of resistance exercise on performance fatigability. Specifically, it was identified that performance fatigability during multi-joint resistance exercise performed with different loads until mechanical failure and modification of lifting tempo required further research. For these reasons, two experimental studies were conducted to address these gaps in knowledge.ududThe first study (chapter 3) examined the influence of an exhaustive bout of high-load and moderate-load hexagonal-barbell deadlift (HBD) resistance exercise on acute changes and recovery of contractile function and voluntary activation in resistance-trained males. The results indicate that both voluntary activation and contractile function were reduced after moderate-load HBD exercise, but not high-load exercise. Additionally, after a 24-h recovery period, both voluntary activation and contractile function were impaired. Interestingly, the partial recovery was due to a near return to before exercise values of contractile function and therefore the incomplete recovery was due to reduced voluntary activation.ududIn chapter four, the influence of a structured bout of volume load-equated HBD exercise with manipulation of lifting tempo on changes to contractile function and voluntary activation was examined. The main finding was that slow tempo and fast tempo HBD exercise resulted in similar reductions to both voluntary activation and contractile function. However, it is unknown if this remains the case when greater resistance exercise volumes are performed. Additionally, further research is required to understand the mechanisms of reduced voluntary activation during fast tempo resistance exercise. Finally, the findings from the experimental chapters are summarised and practical recommendations for the prescription of resistance exercise within athletic training programmes are presented. ududIn conclusion, because of the lowered reductions of contractile function and voluntary activation observed after high-load resistance exercise, it may be a preferable training modality for coaches to employ during the in-season period or during times of intense concurrent training. Additionally, changes to contractile function and voluntary activation associated with fast and slow tempo volume load-equated exercise is similar. However, more work is required to see if this remains the case when larger volumes of work are completed.
机译:运动员进行一些阻力运动,以提高运动能力并减少受伤的风险。对运动的疲劳可能与自愿性肌肉激活或收缩功能的改变有关。最近的文献提出了性能疲劳性和可感知疲劳性的术语,以更好地描述人类性能疲劳的广泛解释。因此,性能疲劳性取决于收缩机械和神经系统提供适当激活信号以维持任务的能力。 ud ud在对与疲劳和人类表现有关的文献进行回顾之后,建立了本文实验章节的基本原理(第2章)。这篇综述强调了对性能疲劳的研究通常集中于运动锻炼,例如跑步或骑自行车。但是,很少有工作检查抵抗运动对表现疲劳的影响。具体而言,已确定需要在不同载荷下进行多关节阻力锻炼期间的性能可疲劳性,直到机械故障和提升节奏的变化都需要进一步研究。出于这些原因,进行了两项实验研究来解决这些知识上的空白。 ud ud第一个研究(第3章)研究了高负荷和中负荷的六角杠铃硬拉(HBD)阻力锻炼的力竭力的影响抵抗训练的男性的急性变化和收缩功能的恢复以及自愿激活。结果表明,中等负荷的HBD运动后自愿性激活和收缩功能均降低,而高负荷运动则没有。另外,在24小时的恢复期后,自愿激活和收缩功能均受损。有趣的是,部分恢复是由于运动前的收缩功能恢复到接近之前的水平,因此,不完全恢复是由于自愿激活减少所致。 ud ud第四章,以体积负荷为单位的HBD运动的结构性回弹的影响通过操纵节奏来改变收缩功能和自愿激活。主要发现是,慢节奏和快节奏的HBD锻炼导致自愿激活和收缩功能的相似降低。但是,当进行更大的抵抗运动量时,是否仍会保持这种状态是未知的。此外,还需要进一步的研究来了解在快速节奏抵抗运动过程中减少自愿激活的机制。最后,总结了实验章节的发现,并提出了针对运动训练计划中抵抗运动处方的实用建议。总而言之,由于在高负荷阻力运动后观察到的收缩功能和自发性活动降低的程度降低,这可能是教练在季节内或同时进行大量剧烈训练时采用的一种较好的训练方式。此外,与快慢节奏的速度负荷均衡运动相关的收缩功能的改变和自愿性激活是相似的。但是,需要完成更多工作才能确定完成大量工作后是否仍然如此。

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    Collison Jay;

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