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弧形非电动跑步机对跑步步幅长度、平衡及步幅角度的影响

The Effect of a Curved Non-Motorized Treadmill on Running Gait Length, Imbalance and Stride Angle.

作者信息

Hatchett Andrew, Armstrong Kaitlyn, Parr Brian, Crews Mallory, Tant Charlie

机构信息

Department of Exercise and Sport Sciences, University of South Carolina Aiken, Aiken, SC 29801, USA.

出版信息

Sports (Basel). 2018 Jun 29;6(3):58. doi: 10.3390/sports6030058.

Abstract

Running on a non-motorized, curved-deck treadmill is thought to improve gait mechanics. It is not known, though, whether the change in gait carries over to running on a motorized treadmill on level ground. To determine the effect of running on a curved non-motorized treadmill (CNT) on gait characteristics, measured during a subsequent bout of running on a traditional motorized treadmill (TMT), sixteen healthy college-aged participants, aged (mean ± SD) 20.4 ± 1.6 years, volunteered to have their gait analyzed while running on a TMT and CNT. After familiarization with, and a warm-up on, both treadmills, each subject completed five 4-min bouts of running, alternating between traditional motorized and curved non-motorized treadmills: TMT-1, CNT-1, TMT-2, CNT-2, and TMT-3. Variables of interest included step length (m), stride length (m), imbalance score (%), and stride angle (°), and were measured using Optogait gait analysis equipment. We found differences in gait characteristics among TMT-1, TMT-2, and TMT-3, which can be attributed to running on the CNT. The results show that running on a CNT resulted in significant changes in gait characteristics (step length, stride length, imbalance score and stride angle). These findings suggest that running on a CNT can significantly influence running gait.

摘要

在非电动的弧形跑台上跑步被认为可以改善步态力学。然而,尚不清楚这种步态变化是否会延续到在水平地面的电动跑台上跑步。为了确定在弧形非电动跑步机(CNT)上跑步对步态特征的影响,在随后在传统电动跑步机(TMT)上跑步期间进行测量,16名健康的大学生参与者820.4±1.6岁,自愿在TMT和CN8上跑步时对其步态进行分析。在熟悉并热身两台跑步机后,每个受试者完成了五次4分钟的跑步,在传统电动跑步机和弧形非电动跑步机之间交替进行:TMT-1、CNT-1、TMT-2、CNT-2和TMT-3。感兴趣的变量包括步长(米)、步幅(米)、不平衡得分(%)和步幅角度(°),并使用Optogait步态分析设备进行测量。我们发现TMT-1、TMT-2和TMT-3之间的步态特征存在差异,这可归因于在CNT上跑步。结果表明,在CNT上跑步导致8态特征(步长、步幅、不平衡得分和步幅角度)发生显著变化。这些发现表明,在CNT上跑步会显著影响跑步步态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8a5/6162380/c94d6c64f937/sports-06-00058-g001.jpg

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