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Changes in postural sway frequency and complexity in altered sensory environments following whole body vibrations

机译:全身振动后感官环境改变时姿势摇摆频率和复杂性的变化

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摘要

Studies assessing whole body vibration (WBV) have produced largely positive effects, with some neutral, on postural control with frequencies between 25 and 40. Hz. However no conclusive evidence indicates that 25-40. Hz elicits the optimal beneficial effects. To address this issue, a larger range of vibration intensity (10-50. Hz at peak-to-peak amplitudes of 2 and 5. mm) was employed while increasing the postural complexity (altered somatosensory and/or visual information) to assess acute effects of 4-min of WBV on postural control. Twelve healthy young adults underwent postural assessment at four time intervals (prior to, immediately following and 10 and 20. min post WBV). Findings revealed both postural sway frequency and sway complexity/regularity were affected by WBV. Baseline posture demonstrated increased sway frequency (p= .04) following WBV with no changes in sway complexity. When the support surface was altered, changes in both the frequency and complexity of sway were elicited (p= .027, .002, respectively). When both somatosensory and visual information were altered delayed improvements in postural control were elicited (p= .05 and .01, for frequency and complexity, respectively). Given the differential acute effects as a function of postural task complexity, future longitudinal studies could determine the overall training effect on sway frequency and complexity.
机译:评估全身振动(WBV)的研究对频率在25到40 Hz之间的姿势控制产生了很大的积极影响,并且具有中性。但是,没有确凿证据表明该比例为25-40。 Hz产生最佳的有益效果。为解决此问题,在增加姿势复杂性(改变体感和/或视觉信息)的同时,采用了更大范围的振动强度范围(峰峰值为2和5 mm时为10-50。Hz),以评估急性4分钟的WBV对姿势控制的影响。在四个时间间隔(WBV之前,之后,10和20分钟之后)对十二名健康的年轻人进行姿势评估。研究结果表明姿势摇摆频率和摇摆复杂度/规律性均受WBV影响。基线姿势表明WBV后摇摆频率增加(p = .04),而摇摆复杂度没有变化。改变支撑表面时,会引起摇摆的频率和复杂性的变化(分别为p = .027,.002)。当改变体感和视觉信息时,会导致姿势控制的延迟改善(分别针对频率和复杂性,p = .05和.01)。鉴于不同的急性影响是姿势任务复杂性的函数,未来的纵向研究可以确定总体训练对摇摆频率和复杂性的影响。

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