Constant Resistance During Proportional Speed Provoked Higher Lower Limb Proximal Musculature Recruitment than Distal Musculature in Young Healthy Adults

Martin G. Rosario, Kelly Keitel, Josey Meyer
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引用次数: 3

Abstract

The lack of exercise in society today often leads to severe muscle loss and poor physical performance. Training methods targeting specific weakened muscle groups can help prevent or counteract muscle loss. This study aimed to analyze how the lower extremity muscles are activated when pushing a sled with constant resistance at two different speeds. Twenty-six participants with an average age of 23.77 years consented to having electromyography surface electrodes placed along the gluteus maximus (GMax), gluteus medius (GMed), tibialis anterior (TA), and gastrocnemius (GA) of their dominant leg. Muscle activation levels were then measured while the participant walked and ran with and without sled resistance. The study results showed that muscle activation was comparable during all trials and was not influenced by speed or constant resistance. However, the muscle activation for GMax and GMed was significantly higher than the activation levels exhibited by GA and TA. While pushing a sled has been shown to impact all studied musculature similarly, adding resistance to the movement can affect gait parameters such as stride length and cadence. Our findings support the use of sled training in patients with hip pathologies who are seeking to strengthen their GMax and GMed.
比例速度时的恒定阻力引起年轻健康成人下肢近端肌肉组织比远端肌肉组织募集更多
当今社会缺乏锻炼经常导致严重的肌肉损失和身体表现不佳。针对特定虚弱肌肉群的训练方法可以帮助防止或抵消肌肉损失。这项研究旨在分析在两种不同速度下以恒定阻力推动雪橇时,下肢肌肉是如何被激活的。26名平均年龄23.77岁的参与者同意沿其主腿的臀大肌(GMax)、臀中肌(GMed)、胫前肌(TA)和腓骨肌(GA)放置肌电表面电极。然后测量参与者在有和没有雪橇阻力的情况下走路和跑步时的肌肉激活水平。研究结果表明,在所有试验中,肌肉的激活都是相似的,不受速度或恒定阻力的影响。然而,GMax和GMed的肌肉激活水平显著高于GA和TA的激活水平。虽然推雪橇对所有研究的肌肉组织的影响相似,但增加运动阻力会影响步幅和节奏等步态参数。我们的研究结果支持雪橇训练用于寻求加强GMax和GMed的髋关节病变患者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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