首页> 美国卫生研究院文献>Journal of Sports Science Medicine >Variations in Neuromuscular Activity of Thigh Muscles During Whole-Body Vibration in Consideration of Different Biomechanical Variables
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Variations in Neuromuscular Activity of Thigh Muscles During Whole-Body Vibration in Consideration of Different Biomechanical Variables

机译:考虑到不同的生物力学变量大腿振动过程中大腿肌肉神经肌肉活动的变化。

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摘要

The intention of this study was to systematically analyze the impact of biomechanical variables in terms of different vibration frequencies, amplitudes and knee angles on quadriceps femoris and hamstring activity during exposure to whole-body vibration (WBV). 51 healthy men and women (age 55 ± 8 years) voluntary participated in the study and were randomly allocated to five different vibration-frequency groups. Each subject performed 9 static squat positions (3 amplitudes x 3 knee angles) on a side alternating vibration platform. Surface electromyography (EMG) was used to record the neuromuscular activity of the quadriceps femoris and hamstring muscles. Maximal voluntary contractions (MVCs) were performed prior to the measurements to normalize the EMG signals. A three-way mixed ANOVA was performed to analyze the different effects of the biomechanical variables on muscle activity. Depending on the biomechanical variables, EMG muscle activity ranged between 18.2 and 74.1 % MVC in the quadriceps femoris and between 5.2 and 27. 3 % MVC in the hamstrings during WBV. The highest levels of muscle activation were found at high frequencies and large amplitudes. Especially in the quadriceps femoris muscle, a WBV frequency of 30 Hz led to a significant increase in muscle activity compared to the other tested frequencies. However, it seems that knee angle is only relevant for the quadriceps femoris muscle. The results of this study should give more information for developing individual training protocols for WBV treatment in different practical applications.Key Points class="unordered" style="list-style-type:disc">WBV leads to a higher muscle activity of the quadriceps femoris than of the hamstrings.The maximum levels of muscle activity were significantly reached at high amplitude and high frequency.The knee angle only significantly affects the quadriceps femoris.Certain combinations of the biomechanical variables have similar effects on the level of muscle activity.
机译:这项研究的目的是系统地分析生物机械变量在暴露于全身振动(WBV)期间不同振动频率,幅度和膝盖角度对股四头肌和eps绳肌活动的影响。 51名健康的男性和女性(年龄55±8岁)自愿参加了这项研究,并随机分配给五个不同的振动频率组。每个受试者在侧面交替振动平台上执行9个静态下蹲位置(3个幅度x 3个膝盖角度)。表面肌电图(EMG)用于记录股四头肌和and绳肌的神经肌肉活动。在测量之前进行最大的自愿收缩(MVC)以使EMG信号标准化。进行了三向混合方差分析,以分析生物力学变量对肌肉活动的不同影响。取决于生物力学变量,在股四头肌中,EMG肌肉活动范围在股四头肌的MVC在18.2%至74.1%之间,在绳肌的肌腱在5.2%至27. 3%之间。在高频和大振幅下发现最高水平的肌肉激活。尤其是股四头肌,与其他测试频率相比,WBV频率为30 Hz导致肌肉活动显着增加。但是,似乎膝盖角度仅与股四头肌有关。这项研究的结果应为在不同的实际应用中开发针对WBV治疗的个体训练方案提供更多信息。要点 class =“ unordered” style =“ list-style-type:disc”> <!-list-behavior =无序前缀词=标记类型=光盘最大标签大小= 0-> WBV导致股四头肌的肌肉活动高于绳肌。 最大水平高振幅和高频率显着地达到肌肉活动。 膝关节角度仅显着影响股四头肌。 某些生物力学变量组合对股四头肌水平的影响相似。肌肉活动。

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