Suppr超能文献

地面冲刺过程中腘绳肌拉力的估计。

Estimation of tensile force in the hamstring muscles during overground sprinting.

作者信息

Ono T, Higashihara A, Shinohara J, Hirose N, Fukubayashi T

机构信息

Faculty of Sports Sciences, Waseda University, Tokorozawa, Japan.

Department of Health and Sports, Niigata University of Health and Welfare, Niigata, Japan.

出版信息

Int J Sports Med. 2015 Feb;36(2):163-8. doi: 10.1055/s-0034-1385865. Epub 2014 Sep 25.

Abstract

The purpose of this study was to identify the period of the gait cycle during which the hamstring muscles were likely injured by estimating the magnitude of tensile force in each muscle during overground sprinting. We conducted three-dimensional motion analysis of 12 male athletes performing overground sprinting at their maximal speed and calculated the hamstring muscle-tendon length and joint angles of the right limb throughout a gait cycle during which the ground reaction force was measured. Electromyographic activity during sprinting was recorded for the biceps femoris long head, semitendinosus, and semimembranosus muscles of ipsilateral limb. We estimated the magnitude of tensile force in each muscle by using the length change occurred in the musculotendon and normalized electromyographic activity value. The study found a quick increase of estimated tensile force in the biceps femoris long head during the early stance phase of the gait cycle during which the increased hip flexion angle and ground reaction force occurred at the same time. This study provides quantitative data of tensile force in the hamstring muscles suggesting that the biceps femoris long head muscle is susceptible to a strain injury during the early stance phase of the sprinting gait cycle.

摘要

本研究的目的是通过估计在地面短跑过程中每块肌肉的拉力大小,来确定在步态周期中腘绳肌可能受伤的阶段。我们对12名男性运动员以最大速度进行地面短跑时进行了三维运动分析,并计算了在测量地面反作用力的整个步态周期中,右下肢的腘绳肌肌腱长度和关节角度。记录了同侧肢体股二头肌长头、半腱肌和半膜肌在短跑过程中的肌电活动。我们通过利用肌腱长度的变化和归一化肌电活动值来估计每块肌肉的拉力大小。研究发现,在步态周期的早期支撑阶段,股二头肌长头的估计拉力迅速增加,此时髋关节屈曲角度增加且地面反作用力同时出现。本研究提供了腘绳肌拉力的定量数据,表明在短跑步态周期的早期支撑阶段,股二头肌长头肌肉易受拉伤。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验