Centre for Healthy Ageing, Murdoch University, Murdoch, Western Australia, Australia.
Murdoch Applied Sports Science Laboratory, Murdoch University, Murdoch, Western Australia, Australia.
PLoS One. 2022 Oct 27;17(10):e0267937. doi: 10.1371/journal.pone.0267937. eCollection 2022.
Maximal strength can be predicted from the load-velocity relationship (LVR), although it is important to understand methodological approaches which ensure the validity and reliability of these strength predictions. The aim of this systematic review was to determine factors which influence the validity of maximal strength predictions from the LVR, and secondarily to highlight the effects of these factors on the reliability of predictions. A search strategy was developed and implemented in PubMed, Scopus, Web of Science and CINAHL databases. Rayyan software was used to screen titles, abstracts, and full texts to determine their inclusion/eligibility. Eligible studies compared direct assessments of one-repetition maximum (1RM) with predictions performed using the LVR and reported prediction validity. Validity was extracted and represented graphically via effect size forest plots. Twenty-five eligible studies were included and comprised of a total of 842 participants, three different 1RM prediction methods, 16 different exercises, and 12 different velocity monitoring devices. Four primary factors appear relevant to the efficacy of predicting 1RM: the number of loads used, the exercise examined, the velocity metric used, and the velocity monitoring device. Additionally, the specific loads, provision of velocity feedback, use of lifting straps and regression model used may require further consideration.
最大力量可以根据负荷-速度关系 (LVR) 进行预测,尽管了解确保这些力量预测有效性和可靠性的方法途径非常重要。本系统评价的目的是确定影响 LVR 最大力量预测准确性的因素,其次是强调这些因素对预测可靠性的影响。制定并实施了一种在 PubMed、Scopus、Web of Science 和 CINAHL 数据库中搜索的策略。Rayyan 软件用于筛选标题、摘要和全文,以确定其是否符合纳入/资格标准。合格的研究将单次重复最大重量(1RM)的直接评估与使用 LVR 进行的预测进行比较,并报告了预测的有效性。通过效应大小森林图提取和表示有效性。有 25 项合格的研究,共有 842 名参与者,三种不同的 1RM 预测方法,16 种不同的运动,以及 12 种不同的速度监测设备。有四个主要因素似乎与预测 1RM 的效果相关:使用的负荷数量、检查的运动、使用的速度指标以及速度监测设备。此外,还需要进一步考虑特定的负荷、速度反馈的提供、使用提升带和回归模型。