健康青年饮用能量饮料后踝关节复杂肌肉组织的适应

Martin G. Rosario, Clare Hanrahan Spt, Lauren Basye Spt, Ashley Correa Spt
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引用次数: 3

摘要

在过去的几年里,能量饮料的消费量在18-34岁的学生中有所增加。能量饮料会改变平衡,减少血液流动,干扰下肢的神经肌肉活动。我们试图确定三种不同饮料(红牛、摇滚明星和bang)中哪一种特定的添加剂可以促进脚踝复合体肌肉激活的变化。本研究选取了20名年龄在22-28岁的健康年轻人,并将其分为红牛组、摇滚明星组和bang组。在完成四项平衡任务之前,通过放置在胫骨前肌和腓肠肌上的肌电图传感器获得神经肌肉数据。每个参与者在喝16盎司的电子饮料之前和之后都完成了所有的任务。对饮用饮料前后的数据进行方差分析比较。差异有统计学意义,P <0.05。在红牛组和bang组观察到一种趋势,显示出更快的胫骨前活动和延长腓肠肌的活动。在所有的腓肠肌任务中,摇滚明星组也表现出更快的激活趋势和更短的反应。看来,在红牛和Bang中发现的添加剂产生了增加的后侧摆动,这表明在胫骨前肌上观察到的更快的活动。另一方面,在摇滚明星身上遇到的元素会刺激前侧运动,使腓肠肌需要更快的反应。需要进一步的研究来探索某些能量饮料成分对动态活动(如步行)的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ankle complex musculature adaptations after Energy Drinks consumption in healthy young adult
Over the past few years, energy drink consumption has increased among students aged 18–34 years. Energy drinks alter the balance, reduce blood flow and interfere with neuromuscular activation in the lower extremities. We attempted to determine which specific additive of three different drinks (red bull, rockstar, and bang) could contribute to changes in muscle activation of the ankle complex. Twenty healthy young adults aged 22–28 years were included in this study and allocated among 3 groups, red bull, rockstar, and bang. Neuromuscular data were obtained from EMG sensors positioned on the anterior tibialis and gastrocnemius before completing the four balance tasks. Each participant completed all the tasks before and after the 16-ounce Edrink. ANOVA was performed to compare the data before and after the beverage. Statistical significance was set at P <0.05. A trend was observed in red bull and bang groups revealing a faster anterior tibial activity and prolong activation for gastrocnemius. The rockstar group also showed a more rapid activation trend and shorter response during all tasks for the gastrocnemius. It appears that the additives found in Redbull and Bang produce an increased posterior sway, indicated by the faster activity observed on the anterior tibial muscle. On the other hand, the elements encountered in rockstars provoke anterior movements, creating the need for a quicker response from the gastrocnemius muscle. Further research is required to explore certain energy drink ingredients' effects on dynamic activities such as walking.
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