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体重支持与跑步方向对自选运动模式的综合影响。

The combined influence of body weight support and running direction on self-selected movement patterns.

作者信息

Masumoto Kenji, Mercer John A

机构信息

Graduate School of Human-Environment Studies, Kyushu University, 744 Motooka, Nishi-ku, Fukuoka, Fukuoka 819-0395, Japan.

Department of Kinesiology and Nutrition Sciences, University of Nevada, Las Vegas, 4505 Maryland Parkway, Las Vegas, Nevada 89154-3034, United States.

出版信息

Hum Mov Sci. 2023 Apr;88:103065. doi: 10.1016/j.humov.2023.103065. Epub 2023 Jan 30.

Abstract

We investigated metabolic costs, muscle activity, and perceptual responses during forward and backward running at matched speeds at different body weight support (BWS) conditions. Participants ran forward and backward on a lower body positive pressure treadmill at 0%BWS, 20%BWS, and 50%BWS conditions. We measured oxygen uptake, carbon dioxide production, heart rate, muscle activity, and stride frequency. Additionally, we calculated metabolic cost of transport. Furthermore, we used rating of perceived exertion and feeling scale to investigate perceptual responses. Feeling scale during running was higher with increasing BWS (0-50%BWS), regardless of running direction (p < 0.05). Oxygen uptake, heart rate, and metabolic cost of transport were influenced by the interaction of running direction and BWS (p < 0.01). For example, metabolic cost of transport during backward running was greater than when running forward only when running at 0%BWS (i.e., 4.4 ± 1.1 and 5.8 ± 1.4 J/kg/m for forward and backward running, respectively: p < 0.001). However, rectus femoris muscle activity, stride frequency, and rating of perceived exertion during backward running were averages of 113.5%, 11.3%, and 2.8 rankings greater than when running forward, respectively, regardless of BWS (p < 0.001). We interpret our observations to indicate that environment (in the context of effective body weight) is a critical factor that determines self-selected movement patterns during forward and backward running.

摘要

我们研究了在不同体重支持(BWS)条件下,以匹配速度向前和向后跑步时的代谢成本、肌肉活动和感知反应。参与者在下肢正压跑步机上,于0%BWS、20%BWS和50%BWS条件下进行向前和向后跑步。我们测量了摄氧量、二氧化碳产生量、心率、肌肉活动和步频。此外,我们计算了运输代谢成本。此外,我们使用主观用力程度评分和感觉量表来研究感知反应。无论跑步方向如何,随着BWS增加(0 - 50%BWS),跑步时的感觉量表得分更高(p < 0.05)。摄氧量、心率和运输代谢成本受跑步方向和BWS相互作用的影响(p < 0.01)。例如,仅在0%BWS跑步时,向后跑的运输代谢成本大于向前跑(即向前和向后跑时分别为4.4±1.1和5.8±1.4 J/kg/m:p < 0.001)。然而,无论BWS如何,向后跑时股直肌肌肉活动、步频和主观用力程度评分分别比向前跑时平均高113.5%、11.3%和2.8个排名(p < 0.001)。我们对观察结果的解释是,环境(在有效体重的背景下)是决定向前和向后跑步时自我选择运动模式的关键因素。

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