García-Gutiérrez M T, Hazell T J, Marín P J
Laboratory of Physiology, European University Miguel de Cervantes, Valladolid, Spain.
J Musculoskelet Neuronal Interact. 2016 Sep 7;16(3):204-10.
To evaluate the effects of whole-body vibration (WBV) on skeletal muscle activity and power performance of the upper body during decline bench press exercise at different loads.
Forty-seven healthy young and active male students volunteered. Each performed dynamic decline bench press repetitions with and without WBV (50 Hz, 2.2 mm) applied through a hamstring bridge exercise at three different loads of their 1-repetition maximum (1RM): 30%, 50%, and 70% 1RM. Muscle activity of the triceps brachii (TB), biceps brachii (BB), pectoralis major (PM), and biceps femoris (BF) was measured with surface electromyography electrodes and kinetic parameters of the repetitions were measured with a rotary encoder.
WBV increased peak power (PP) output during the 70% 1RM condition (p<0.01). Muscle activity was increased with WBV in the TB and BF muscles at all loads (p<0.05). There were no effects of WBV on BB or PM muscles.
WBV applied through a hamstring bridge exercise increases TB muscle activity during a decline bench press and this augmentation contributes to an increased peak power at higher loads and increased peak acceleration at lower loads.
评估在不同负荷下的下斜卧推运动中,全身振动(WBV)对上半身骨骼肌活动和力量表现的影响。
47名健康、年轻且活跃的男学生自愿参与。每个人在三种不同负荷(分别为其一次重复最大值[1RM]的30%、50%和70%)下进行下斜卧推重复动作,其中一组有通过腿筋桥式运动施加的WBV(50赫兹,2.2毫米),另一组没有。使用表面肌电图电极测量肱三头肌(TB)、肱二头肌(BB)、胸大肌(PM)和股二头肌(BF)的肌肉活动,并使用旋转编码器测量重复动作的动力学参数。
在70% 1RM负荷条件下,WBV增加了峰值功率(PP)输出(p<0.01)。在所有负荷下,WBV均增加了TB和BF肌肉的活动(p<0.05)。WBV对BB或PM肌肉没有影响。
通过腿筋桥式运动施加的WBV在下斜卧推过程中增加了TB肌肉的活动,这种增强有助于在较高负荷下增加峰值功率,并在较低负荷下增加峰值加速度。