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跑步模式对标准缓冲跑鞋性能下降的适应性:一项为期6个月随访的随机对照试验。

Adaptation of running pattern to the drop of standard cushioned shoes: A randomised controlled trial with a 6-month follow-up.

作者信息

Malisoux Laurent, Gette Paul, Chambon Nicolas, Urhausen Axel, Theisen Daniel

机构信息

Luxembourg Institute of Health, Sports Medicine Research Laboratory, Grand-Duchy of Luxembourg, Luxembourg.

Luxembourg Institute of Health, Sports Medicine Research Laboratory, Grand-Duchy of Luxembourg, Luxembourg.

出版信息

J Sci Med Sport. 2017 Aug;20(8):734-739. doi: 10.1016/j.jsams.2017.01.238. Epub 2017 Mar 18.

Abstract

OBJECTIVES

While several cross-sectional studies have investigated the acute effects of shoe drop on running biomechanics, the long-term consequences are currently unknown. This study aimed to investigate if the drop of standard cushioned shoes induces specific adaptations in running technique over a six-month period in leisure-time runners.

DESIGN

Double-blinded randomised controlled trial.

METHODS

The participants (n=59) received a pair of shoes with a heel-to-toe drop of 10mm (D10), 6mm (D6) or 0mm (D0) and were followed-up regarding running training over 6 months or 500km, whichever came first. Spatio-temporal variables and kinematics (foot/ground, ankle and knee joint angles) were investigated while running at preferred speed on a treadmill before and after the follow-up.

RESULTS

The participants ran 332±178km in the study shoes between pre- and post-tests. There was no shoe version by time interaction for any of the spatio-temporal variables nor for lower limb angles at initial ground contact. A small but significant shoe drop effect was found for knee abduction at mid-stance (p=0.032), as it decreased for the D0 version (-0.3±3.1 vs. -1.3±2.6°) while it increased for the D6 (0.3±2.7 vs. 1.3±3.1°) and D10 version (-0.2±3.2 vs. 0.5±3.1°). However, none of the pairwise comparisons was significant in the post-hoc analysis.

CONCLUSIONS

Apart from knee abduction at mid-stance, no specific adaptation in spatio-temporal variables and kinematics was found between the three shoe versions during this 6-month follow-up. Thus, shoe drop of standard cushioned shoes does not seem to influence running biomechanics in the long term.

摘要

目的

虽然已有多项横断面研究调查了鞋跟落差对跑步生物力学的急性影响,但目前尚不清楚其长期后果。本研究旨在调查标准缓冲鞋的落差是否会在六个月内使休闲跑步者的跑步技术产生特定适应性变化。

设计

双盲随机对照试验。

方法

参与者(n = 59)分别收到一双后跟到脚尖落差为10毫米(D10)、6毫米(D6)或0毫米(D0)的鞋子,并在6个月或500公里(以先达到者为准)的跑步训练期间接受随访。在随访前后,让参与者在跑步机上以偏好速度跑步时,对时空变量和运动学(脚/地、踝关节和膝关节角度)进行了调查。

结果

在测试前和测试后期间,参与者穿着研究用鞋跑了332±178公里。对于任何时空变量以及初始触地时的下肢角度,均未发现鞋款与时间的交互作用。在支撑中期发现了一个虽小但显著的鞋跟落差效应(p = 0.032),D0鞋款的膝关节外展角度减小(-0.3±3.1°对-1.3±2.6°),而D6(0.3±2.7°对1.3±3.1°)和D10鞋款(-0.2±3.2°对0.5±3.1°)的膝关节外展角度增加。然而,事后分析中两两比较均无显著性差异。

结论

在这6个月的随访期间,除了支撑中期的膝关节外展角度外,在三种鞋款之间未发现时空变量和运动学方面的特定适应性变化。因此,标准缓冲鞋的鞋跟落差似乎不会长期影响跑步生物力学。

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