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Effect of whole-body vibration on center-of-mass movement during standing in children and young adults

机译:全身振动对儿童和年轻成年人群众群体运动的影响

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Whole body vibration (WBV) can affect postural control and muscular activation. The purpose of this study was to investigate the center-of-mass (COM) movement of children and young adults before, during, immediately after, and 5 min after 40-s WBV in quiet standing. Fourteen young adults (mean age 24.5 years) and fourteen children (mean age 8.1 years) participated in the study. A full-body 35-marker set was placed on the participants and used to calculate COM. Forty-second standing trials were collected before, during, immediately after, and 5 min after WBV with an frequency of 28 Hz and an amplitude of <1 mm. Two visual conditions were provided: eyes-open (EO) and eyes-closed (EC). COM variables included time-domain measures (average velocity, range, sway area and fractal dimension), frequency domain measures (total power and median frequency), and detrended fluctuation analysis (DFA) scaling exponent in both anterior-posterior (AP) and medial-lateral (ML) directions. Results show that during WBV both children and adults increased average velocity and median frequency, but decreased range and the DFA scaling exponent. Immediately after WBV both groups increased the range, but showed pre vibration values for most of the COM variables. Comparing to adults, children displayed a higher COM velocity, range, fractal dimension, and total power, but a lower DFA scaling exponent at all phases. The results suggest that both children and adults can quickly adapt their postural control system to WBV and maintain balance during and after vibration. Children display some adult-like postural control during and after WBV; however, their postural development continues into adolescence. Published by Elsevier B.V.
机译:全身振动(WBV)可以影响姿势控制和肌肉激活。本研究的目的是调查儿童和年轻成年人的质量中心(COM)运动,然后,在安静的站立时40-S WBV之后和5分钟。十四名年轻人(平均24.5岁)和十四名儿童(平均年龄8.1岁)参加了这项研究。将全体35标记集放置在参与者上并用于计算COM。在WBV频率为28Hz的频率和<1mm的振幅之后,在WBV之前,在5分钟之前,在5分钟内收集四十二次站立试验。提供了两个视觉条件:眼睛 - 睁开(EO)和眼睛闭合(EC)。 COM变量包括时域测量(平均速度,范围,摇摆区域和分形尺寸),频域措施(总功率和中值),和前后(AP)和内侧的偏移波动分析(DFA)缩放指数 - 路边(ml)方向。结果表明,在WBV期间,儿童和成人都会增加平均速度和中值频率,而是减少范围和DFA缩放指数。在WBV两组增加范围之后,立即增加了大部分COM变量的预振动值。与成年人相比,儿童展示了更高的COM速度,范围,分形尺寸和总功率,而是较低的DFA缩放指数在所有阶段。结果表明,儿童和成人都可以将其姿势控制系统迅速适应WBV,并在振动期间和之后保持平衡。儿童在WBV期间和之后显示一些成人样的姿势控制;然而,他们的姿势发展持续到青春期。 elsevier b.v出版。

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