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Chronic effects of whole-body vibration on jumping performance and body balance using different frequencies and amplitudes with identical acceleration load

机译:在相同加速度负载下使用不同频率和振幅的全身振动对跳跃性能和身体平衡的慢性影响

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Previous studies on vibration training have all been based on protocols at different combinations of frequencies and amplitudes without controlling the loading intensity. Objectives: This study investigated the effect of an 8-week vibration training program, under identical acceleration loads with various frequencies and amplitudes, on jumping performance, muscle activation and body balance. Design: Fifty young adults were randomly assigned to an high-frequency (32. Hz, 1. mm, and 4. g), low-frequency (18. Hz, 3. mm, and 4. g), or a control group. The high-frequency and low-frequency groups underwent 60. s of squats exercise on the specific vibration platform three times a week, whereas the control group was trained without vibration. Methods: A force platform was used to measure the center of pressure of a static single leg stance, and the heights and impulse of two consecutive countermovement jumps before and after intervention. The activation of the rectus femoris and biceps femoris were also measured synchronously by surface electromyography. Results: The heights and impulse of both the first and second countermovement jumps were significantly increased and the area of center of pressure was significantly decreased after training in both the high-frequency and low-frequency groups (P<.05). Consequently, activation of the rectus femoris during the first countermovement jump was significantly lower than the pre-training value in the HF group but increased in the low-frequency group after training (P< .05). Conclusions: An 8-week identical acceleration vibration training regimen with various frequencies and amplitudes can significantly improve jumping performance and body balance, but the specific neuromuscular adaptation is possibly induced by different training settings.
机译:先前关于振动训练的研究都基于不同频率和振幅组合下的协议,而不控制负载强度。目的:本研究调查了在不同频率和振幅的相同加速度负载下,为期8周的振动训练计划对跳跃性能,肌肉激活和身体平衡的影响。设计:将五十名年轻成年人随机分配至高频(32. Hz,1。mm和4. g),低频(18. Hz,3。mm和4. g)或对照组。高频和低频组每周在特定的振动平台上进行60 s的深蹲运动,而对照组则进行无振动训练。方法:用力平台测量静态单腿姿势的压力中心,以及干预前后两个连续反向运动跳跃的高度和冲动。还通过表面肌电图同时测量了股直肌和股二头肌的激活。结果:在高频和低频组中,第一次和第二次反向运动跳跃的高度和冲动都显着增加,而压力中心的面积显着降低(P <.05)。因此,在第一次反跳中,股直肌的激活明显低于HF组的训练前值,但在低频组中在训练后增加(P <0.05)。结论:为期8周的相同加速度振动训练方案具有不同的频率和幅度,可以显着改善跳跃性能和身体平衡,但是特定的神经肌肉适应性可能是由不同的训练设置引起的。

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