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通过训练增强长跑成绩的生理决定因素:基于当前科学知识,能否为跑步者和教练提供有效的建议?

Training to enhance the physiological determinants of long-distance running performance: can valid recommendations be given to runners and coaches based on current scientific knowledge?

作者信息

Midgley Adrian W, McNaughton Lars R, Jones Andrew M

机构信息

Department of Sport, Health and Exercise Science, University of Hull, Hull, England.

出版信息

Sports Med. 2007;37(10):857-80. doi: 10.2165/00007256-200737100-00003.

Abstract

This article investigates whether there is currently sufficient scientific knowledge for scientists to be able to give valid training recommendations to long-distance runners and their coaches on how to most effectively enhance the maximal oxygen uptake, lactate threshold and running economy. Relatively few training studies involving trained distance runners have been conducted, and these studies have often included methodological factors that make interpretation of the findings difficult. For example, the basis of most of the studies was to include one or more specific bouts of training in addition to the runners' 'normal training', which was typically not described or only briefly described. The training status of the runners (e.g. off-season) during the study period was also typically not described. This inability to compare the runners' training before and during the training intervention period is probably the main factor that hinders the interpretation of previous training studies. Arguably, the second greatest limitation is that only a few of the studies included more than one experimental group. Consequently, there is no comparison to allow the evaluation of the relative efficacy of the particular training intervention. Other factors include not controlling the runners' training load during the study period, and employing small sample sizes that result in low statistical power. Much of the current knowledge relating to chronic adaptive responses to physical training has come from studies using sedentary individuals; however, directly applying this knowledge to formulate training recommendations for runners is unlikely to be valid. Therefore, it would be difficult to argue against the view that there is insufficient direct scientific evidence to formulate training recommendations based on the limited research. Although direct scientific evidence is limited, we believe that scientists can still formulate worthwhile training recommendations by integrating the information derived from training studies with other scientific knowledge. This knowledge includes the acute physiological responses in the various exercise domains, the structures and processes that limit the physiological determinants of long-distance running performance, and the adaptations associated with their enhancement. In the future, molecular biology may make an increasing contribution in identifying effective training methods, by identifying the genes that contribute to the variation in maximal oxygen uptake, the lactate threshold and running economy, as well as the biochemical and mechanical signals that induce these genes. Scientists should be cautious when giving training recommendations to runners and coaches based on the limited available scientific knowledge. This limited knowledge highlights that characterising the most effective training methods for long-distance runners is still a fruitful area for future research.

摘要

本文探讨了目前是否有足够的科学知识,使科学家能够就如何最有效地提高最大摄氧量、乳酸阈值和跑步经济性,为长跑运动员及其教练提供有效的训练建议。涉及训练有素的长跑运动员的训练研究相对较少,而且这些研究常常包含一些方法学因素,使得研究结果难以解释。例如,大多数研究的基础是,除了运动员的“正常训练”之外,还包括一个或多个特定的训练环节,而“正常训练”通常没有描述或只是简要描述。研究期间运动员的训练状态(如非赛季)通常也没有描述。无法比较运动员在训练干预期之前和期间的训练情况,可能是阻碍对以往训练研究进行解释的主要因素。可以说,第二大限制是只有少数研究包含不止一个实验组。因此,无法进行比较以评估特定训练干预的相对效果。其他因素包括在研究期间没有控制运动员的训练负荷,以及采用小样本量导致统计功效较低。目前许多与体育训练的慢性适应性反应相关的知识来自对久坐不动个体的研究;然而,直接将这些知识应用于为跑步运动员制定训练建议不太可能有效。因此,很难反对这样一种观点,即基于有限的研究,没有足够的直接科学证据来制定训练建议。尽管直接科学证据有限,但我们认为,科学家仍然可以通过将训练研究得出的信息与其他科学知识相结合,制定出有价值的训练建议。这些知识包括各个运动领域的急性生理反应、限制长跑成绩生理决定因素的结构和过程,以及与之增强相关的适应性变化。未来,分子生物学可能会通过识别影响最大摄氧量、乳酸阈值和跑步经济性变化的基因,以及诱导这些基因的生化和机械信号,在确定有效训练方法方面做出越来越大的贡献。基于有限的现有科学知识向跑步运动员和教练提供训练建议时,科学家应谨慎行事。这种有限的知识凸显出,确定长跑运动员最有效的训练方法仍是未来研究的一个富有成果的领域。

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