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全身振动训练中下肢肌肉活动与平台加速度之间的关系

Relationship Between Lower Limb Muscle Activity and Platform Acceleration During Whole-Body Vibration Exercise.

作者信息

Lienhard Karin, Vienneau Jordyn, Nigg Sandro, Meste Olivier, Colson Serge S, Nigg Benno M

机构信息

1CNRS, I3S, UMR 7271, University of Nice Sophia Antipolis, Nice, France; 2LAMHESS, EA 6312, University of Nice Sophia Antipolis, Nice, France; and 3Human Performance Laboratory, Faculty of Kinesiology, University of Calgary, Calgary, Alberta, Canada.

出版信息

J Strength Cond Res. 2015 Oct;29(10):2844-53. doi: 10.1519/JSC.0000000000000927.

Abstract

The purpose of this study was to identify the influence of different magnitudes and directions of the vibration platform acceleration on surface electromyography (sEMG) during whole-body vibration (WBV) exercises. Therefore, a WBV platform was used that delivers vertical vibrations by a side-alternating mode, horizontal vibrations by a circular mode, and vibrations in all 3 planes by a dual mode. Surface electromyography signals of selected lower limb muscles were measured in 30 individuals while they performed a static squat on a vibration platform. The WBV trials included 2 side-alternating trials (Side-L: 6 Hz, 2.5 mm; Side-H: 16 Hz, 4 mm), 2 circular trials (Circ-L: 14 Hz, 0.8 mm; Circ-H: 43 Hz, 0.8 mm), and 4 dual-mode trials that were the combinations of the single-mode trials (Side-L/Circ-L, Side-L/Circ-H, Side-H/Circ-L, Side-H/Circ-H). Furthermore, control trials without vibration were assessed, and 3-dimensional platform acceleration was quantified during the vibration. Significant increases in the root mean square of the sEMG (sEMGRMS) compared with the control trial were found in most muscles for Side-L/Circ-H (+17 to +63%, p ≤ 0.05), Side-H/Circ-L (+7 to +227%, p ≤ 0.05), and Side-H/Circ-H (+21 to +207%, p < 0.01) and in the lower leg muscles for Side-H (+35 to +138%, p ≤ 0.05). Furthermore, only the vertical platform acceleration showed a linear relationship (r = 0.970, p < 0.001) with the averaged sEMGRMS of the lower limb muscles. Significant increases in sEMGRMS were found with a vertical acceleration threshold of 18 m·s(-2) and higher. The present results emphasize that WBV exercises should be performed on a platform that induces vertical accelerations of 18 m·s(-2) and higher.

摘要

本研究的目的是确定全身振动(WBV)运动期间振动平台不同大小和方向的加速度对表面肌电图(sEMG)的影响。因此,使用了一个WBV平台,该平台通过侧交替模式传递垂直振动,通过圆周模式传递水平振动,并通过双模式传递三个平面的振动。在30名个体在振动平台上进行静态深蹲时,测量了所选下肢肌肉的表面肌电图信号。WBV试验包括2次侧交替试验(侧低:6 Hz,2.5 mm;侧高:16 Hz,4 mm)、2次圆周试验(圆周低:14 Hz,0.8 mm;圆周高:43 Hz,0.8 mm)以及4次双模式试验,即单模式试验的组合(侧低/圆周低、侧低/圆周高、侧高/圆周低、侧高/圆周高)。此外,评估了无振动的对照试验,并在振动期间对三维平台加速度进行了量化。与对照试验相比,在大多数肌肉中,侧低/圆周高(+17%至+63%,p≤0.05)、侧高/圆周低(+7%至+227%,p≤0.05)和侧高/圆周高(+21%至+207%,p<0.01)以及小腿肌肉中侧高(+35%至+138%,p≤0.05)的sEMG均方根(sEMGRMS)显著增加。此外,只有垂直平台加速度与下肢肌肉的平均sEMGRMS呈线性关系(r = 0.970,p < 0.001)。当垂直加速度阈值为18 m·s⁻²及更高时,sEMGRMS显著增加。目前的结果强调,WBV运动应在能产生18 m·s⁻²及更高垂直加速度的平台上进行。

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