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抗阻训练后等长与动态力量的关系:系统评价、荟萃分析和一致性水平。

The Relationship Between Isometric and Dynamic Strength Following Resistance Training: A Systematic Review, Meta-Analysis, and Level of Agreement.

机构信息

Department of Dietetics, Nutrition and Sport, Sport, Performance, and Nutrition Research Group, School of Allied Health, Human Services, & Sport, La Trobe University, Melbourne, VIC, Australia.

School of Behavioral and Health Sciences, Australian Catholic University, Brisbane, QLD, Australia.

出版信息

Int J Sports Physiol Perform. 2023 Sep 23;19(1):2-12. doi: 10.1123/ijspp.2023-0066. Print 2024 Jan 1.

Abstract

BACKGROUND

Maximal lower-body strength can be assessed both dynamically and isometrically; however, the relationship between the changes in these 2 forms of strength following resistance training is not well understood.

PURPOSE

To systematically review and analyze the effects of resistance training on changes in maximal dynamic (1-repetition-maximum back squat, deadlift, and power clean) and position-matched isometric strength (isometric midthigh pull and the isometric squat). In addition, individual-level data were used to quantify the agreement and relationship between changes in dynamic and isometric strength.

METHODS

Databases were systematically searched to identify eligible articles, and meta-analysis procedures were performed on the extracted data. The raw results from 4 studies were acquired, enabling bias and absolute reliability measures to be calculated using Bland-Altman test of agreement.

RESULTS

Eleven studies met the inclusion criteria, which resulted in 29 isometric-dynamic change comparisons. The overall pooled effect was 0.13 in favor of dynamic testing; however, the prediction interval ranged from g = -0.49 to 0.75. There was no evidence of bias (P = .825) between isometric and dynamic tests; however, the reliability coefficient was estimated to be 16%, and the coefficient of variation (%) was 109.27.

CONCLUSIONS

As a range of future effects can be expected when comparing isometric to dynamic strength changes following resistance training, and limited proportionality exists between changes in these 2 strength qualities, there is strong evidence that isometric and dynamic strength represent separate neuromuscular domains. These findings can be used to inform strength-assessment models in athlete populations.

摘要

背景

最大下肢力量既可以动态评估,也可以等长评估;然而,对于抗阻训练后这两种力量形式的变化之间的关系,我们还了解得不够。

目的

系统地回顾和分析抗阻训练对最大动态力量(1 次重复最大深蹲、硬拉和挺举)和位置匹配等长力量(等长大腿中部拉伸和等长深蹲)变化的影响。此外,还使用个体水平数据来量化动态和等长力量变化之间的一致性和关系。

方法

系统地搜索数据库以确定符合条件的文章,并对提取的数据进行荟萃分析。从 4 项研究中获得了原始结果,使我们能够使用 Bland-Altman 一致性检验来计算偏差和绝对可靠性测量。

结果

11 项研究符合纳入标准,这导致了 29 个等长-动态变化比较。总体 pooled 效应有利于动态测试,为 0.13;然而,预测区间范围从 g = -0.49 到 0.75。等长和动态测试之间没有证据表明存在偏差(P =.825);然而,可靠性系数估计为 16%,变异系数(%)为 109.27。

结论

由于在比较抗阻训练后等长和动态力量变化时,可以预期到一系列未来的效果,而且这两种力量质量之间的比例关系有限,因此有强有力的证据表明等长和动态力量代表了不同的神经肌肉域。这些发现可以用于告知运动员人群的力量评估模型。

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