Howard Róisín M, Conway Richard, Harrison Andrew J
a Department of Electronic & Computer Engineering , University of Limerick , Limerick , Ireland.
b Biomechanics Research Unit , University of Limerick , Limerick , Ireland.
Sports Biomech. 2018 Mar;17(1):1-17. doi: 10.1080/14763141.2016.1252790. Epub 2017 Feb 28.
The use of electromyography (EMG) is widely recognised as a valuable tool for enhancing the understanding of performance drivers and potential injury risk in sprinting. The timings of muscle activations relative to running gait cycle phases and the technology used to obtain muscle activation data during sprinting are of particular interest to scientists and coaches. This review examined the main muscles being analysed by surface EMG (sEMG), their activations and timing, and the technologies used to gather sEMG during sprinting. Electronic databases were searched using 'Electromyography' OR 'EMG' AND 'running' OR 'sprinting'. Based on inclusion criteria, 18 articles were selected for review. While sEMG is widely used in biomechanics, relatively few studies have used sEMG in sprinting due to system constraints. The results demonstrated a focus on the leg muscles, with over 70% of the muscles analysed in the upper leg. This is consistent with the use of tethered and data logging EMG systems and many sprints being performed on treadmills. Through the recent advances in wireless EMG technology, an increase in the studies on high velocity movements such as sprinting is expected and this should allow practitioners to perform the analysis in an ecologically valid environment.
肌电图(EMG)的应用被广泛认为是一种有价值的工具,有助于增进对短跑运动表现驱动因素和潜在受伤风险的理解。肌肉激活相对于跑步步态周期阶段的时间以及在短跑过程中用于获取肌肉激活数据的技术,尤其受到科学家和教练的关注。本综述考察了通过表面肌电图(sEMG)分析的主要肌肉、它们的激活情况和时间,以及在短跑过程中用于收集sEMG的技术。使用“肌电图”或“EMG”以及“跑步”或“短跑”检索电子数据库。根据纳入标准,选择了18篇文章进行综述。虽然sEMG在生物力学中被广泛使用,但由于系统限制,在短跑中使用sEMG的研究相对较少。结果表明研究重点在腿部肌肉,超过70%的肌肉分析集中在大腿。这与使用有线和数据记录EMG系统以及许多短跑在跑步机上进行的情况一致。随着无线EMG技术的最新进展,预计对短跑等高速度运动的研究将会增加,这将使从业者能够在生态有效环境中进行分析。