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足部伸展器位置和划桨频率对测功机划船运动学的影响。

The effect of foot-stretcher position and stroke rate on ergometer rowing kinematics.

机构信息

Department of Orthopaedics and Sports Medicine, UW Medicine, University of Washington, Seattle, WA, United States of America.

Department of Rehabilitation Medicine, UW Medicine, University of Washington, Seattle, WA, United States of America.

出版信息

PLoS One. 2023 May 11;18(5):e0285676. doi: 10.1371/journal.pone.0285676. eCollection 2023.

Abstract

Rowing ergometers are popular tools for general fitness and competitive crew teams. The effect of the equipment set up on the rowing stroke has received limited attention. This study aimed to determine the effects of altering the foot-stretcher position on rowing kinematics across different stroke rates. Eleven college-level rowers took part in this study. A rowing ergometer was modified to allow the height and angle of the foot-stretcher to be adjusted. Seven foot-stretcher positions were tested, each at rates of 22, 26, and 32 strokes per minute. Sagittal plane kinematic waveforms were compared between conditions for all major joints using statistical parametric mapping, and temporal variables were assessed (p < 0.05). Stroke rate was found to affect kinematic patterns for all joints. The effect of the foot-stretcher position was limited to the ankle and hip. Similarly, the timing of events during the rowing stroke was affected by the stroke rate, but not foot position. These results indicate that while some limited changes to the stroke technique can be caused by altering the foot-stretcher position, the changes were largely compensated for by the rowers and are generally smaller than differences between stroke rates.

摘要

赛艇测功仪是健身和竞技赛艇队常用的工具。设备设置对划桨动作的影响受到的关注有限。本研究旨在确定改变脚蹬位置对不同划桨频率下划桨运动学的影响。11 名大学生赛艇运动员参与了本研究。对赛艇测功仪进行了改装,以调整脚蹬的高度和角度。在 22、26 和 32 划/分钟的三种桨频下,分别测试了 7 种脚蹬位置。使用统计参数映射比较了所有主要关节在不同条件下的矢状面运动学波形,并评估了时间变量(p<0.05)。研究发现,所有关节的运动学模式都受到桨频的影响。脚蹬位置的影响仅限于踝关节和髋关节。同样,划桨过程中事件的时间也受到桨频的影响,但不受脚蹬位置的影响。这些结果表明,虽然通过改变脚蹬位置可以对划桨技术进行一些有限的调整,但这些变化主要由运动员进行了补偿,并且通常小于桨频之间的差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e15e/10174490/951f5f9f7afa/pone.0285676.g001.jpg

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