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不同跑步速度下股直肌和股二头肌的肢体间与肢体内部协调

Interlimb and Intralimb Coordination of Rectus Femoris and Biceps Femoris Muscles at Different Running Speeds.

作者信息

Kakehata Gaku, Goto Yuta, Yokoyama Hikaru, Iso Shigeo, Kanosue Kazuyuki

机构信息

Research Organization of Science and Technology, Ritsumeikan University, Shiga, JAPAN.

Institute of Engineering, Tokyo University of Agriculture and Technology, Tokyo, JAPAN.

出版信息

Med Sci Sports Exerc. 2023 May 1;55(5):945-956. doi: 10.1249/MSS.0000000000003106. Epub 2022 Dec 27.

Abstract

PURPOSE

The purpose of this study was to investigate the relationship between spatiotemporal variables and the muscle activity of the rectus femoris (RF) and biceps femoris (BF) in both legs at various running speeds.

METHODS

Eighteen well-trained male athletes (age: 20.7 ± 1.8 yr) were asked to run for 50 m with 7 different "subjective efforts (SE)" (20%, 40%, 60%, 80%, 90%, 95%, and 100% SE). SE scaled relative to the maximal effort running (100%). The spatiotemporal variables (running speed, step frequency, step length) were measured over the distance from 30 to 50 m. The RF and BF muscle activities were obtained from both legs with wireless electromyography (EMG) sensors. We calculated RF and BF onset/offset timings in both legs (e.g., ipsilateral leg RF is "iRF," contralateral leg BF is "cBF"), which were expressed as % of a running cycle. Based on those timings, we obtained the EMG timing variables (%), as Switch1 (iBF offset to iRF onset), Switch2 (iRF offset to iBF onset), Scissors1 (cBF onset to iRF onset), and Scissors2 (iRF offset to cBF offset).

RESULTS

running speed was well correlated with the SE, and higher running speed (>9 m·s -1 ) was achieved with higher step frequency (>4.0 Hz). Relative timings of RF and BF onset/offset (%) appeared earlier and later, respectively, with an increase in running speed. The absolute duration of RF activation (s) was elongated with the decrease in absolute running cycle time (increase in running speed). Both Switch and Scissors showed significant negative correlations with running speed and step frequency.

CONCLUSIONS

The RF and BF excitation in both legs, as evidenced by changes in both Switch and Scissors, is coordinated for controlling running speed, as well as step frequency.

摘要

目的

本研究旨在探讨不同跑步速度下时空变量与双侧股直肌(RF)和股二头肌(BF)肌肉活动之间的关系。

方法

招募18名训练有素的男性运动员(年龄:20.7±1.8岁),要求他们以7种不同的“主观用力程度(SE)”(20%、40%、60%、80%、90%、95%和100%SE)进行50米跑步。SE相对于最大用力跑步(100%)进行缩放。在30至50米的距离内测量时空变量(跑步速度、步频、步长)。使用无线肌电图(EMG)传感器获取双侧RF和BF的肌肉活动。我们计算了双侧RF和BF的起始/结束时间(例如,同侧腿RF为“iRF”,对侧腿BF为“cBF”),以跑步周期的百分比表示。基于这些时间,我们获得了EMG时间变量(%),即Switch1(iBF结束至iRF起始)、Switch2(iRF结束至iBF起始)、Scissors1(cBF起始至iRF起始)和Scissors2(iRF结束至cBF结束)。

结果

跑步速度与SE高度相关,步频越高(>4.0Hz),跑步速度越高(>9m·s-1)。随着跑步速度的增加,RF和BF起始/结束的相对时间分别出现得更早和更晚。RF激活的绝对持续时间(s)随着绝对跑步周期时间的减少(跑步速度增加)而延长。Switch和Scissors均与跑步速度和步频呈显著负相关。

结论

Switch和Scissors的变化表明,双侧RF和BF的兴奋在控制跑步速度以及步频方面是协调一致的。

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