AN ANALYSIS OF HEAD KINEMATICS IN WOMEN'S ARTISTIC GYMNASTICS

IF 0.6 Q4 SPORT SCIENCES
N. Pritchard, Jillian E. Urban
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引用次数: 6

Abstract

Concussions in gymnastics have scarcely been researched; however, current evidence suggests that concussion rates may be higher than previously reported due to underreporting among coaches, athletes, and parents. The purpose of this study was to outline a method for collecting head impact data in gymnastics, and to provide the first measurements of head impact exposure within gymnastics. Three optional level women’s artistic gymnasts (ages 11-16) were instrumented with a mouthpiece sensor that measured linear acceleration, rotational velocity, and rotational acceleration of the head during contact and aerial phases of skills performed during practice. Peak linear acceleration, peakrotational velocity, peak rotational acceleration, duration, and time to peak linearacceleration were calculated from sensor data. Kinematic data was time-synchronized to videoand then sensor data was segmented into contact scenarios and skills characterized by theevent rotation, apparatus, landing mat type, skill type, skill phase, landing stability, andbody region contacted. The instrumented gymnasts were exposed to 1,394 contact scenarios(41 per gymnast per session), of which 114 (3.9 per gymnast per session) contained headcontact. Peak kinematics varied across skill type, apparatuses, and landing mats. The medianduration of impacts with head contact (177 ms) was longer than measured impacts in youth andcollegiate level soccer. Results from this study help provide a foundation for future researchthat may seek to examine head impact exposure within gymnastics to better informconcussion prevention and post-concussion return to play protocols within the sport.
女子艺术体操头部运动学分析
体操中的脑震荡很少被研究;然而,目前的证据表明,由于教练、运动员和家长的报告不足,脑震荡发生率可能高于之前的报告。本研究的目的是概述一种在体操中收集头部撞击数据的方法,并提供体操中头部撞击暴露的首次测量。三名可选级别的女子艺术体操运动员(11-16岁)配备了一个接口传感器,该传感器可以测量练习中技能的接触和空中阶段的头部线性加速度、旋转速度和旋转加速度。根据传感器数据计算峰值线性加速度、峰值静止速度、峰值旋转加速度、持续时间和达到峰值线性加速度的时间。运动学数据与视频时间同步,然后传感器数据被分割为接触场景和技能,其特征是事件旋转、器械、着陆垫类型、技能类型、技能阶段、着陆稳定性和身体接触区域。器械体操运动员暴露在1394种接触场景中(每名体操运动员每次41种),其中114种(每名运动员每次3.9种)包含头部接触。峰值运动学因技能类型、器械和着陆垫而异。在青少年和大学级别的足球比赛中,头部接触的冲击中值(177毫秒)比测量的冲击更长。这项研究的结果有助于为未来的研究奠定基础,该研究可能会寻求检查体操中的头部撞击暴露,以更好地了解运动中的脑震荡预防和脑震荡后重返赛场的方案。
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来源期刊
CiteScore
1.30
自引率
33.30%
发文量
48
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