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Effects of seated whole-body vibration on postural control of the trunk during unstable seated balance.

机译:坐姿全身振动对不稳定坐姿平衡过程中躯干姿势控制的影响。

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BACKGROUND: Low back disorders and their prevention is of great importance for companies and their employees. Whole-body vibration is thought to be a risk factor for low back disorders, but the neuromuscular, biomechanical, and/or physiological mechanisms responsible for this increased risk are unclear. The purpose of this study was to measure the acute effect of seated whole-body vibration on the postural control of the trunk during unstable seated balance. METHODS: Twenty-one healthy subjects (age: 23 years (SD 4 years)) were tested on a wobble chair designed to measure trunk postural control. Measurements of kinematic variance and non-linear stability control were based on seat angle before and after 30 min of seated whole-body vibration (bandwidth=2-20 Hz, root-mean-squared amplitude=1.15m/s(2)). FINDINGS: All measures of kinematic variance of unstable seated balance increased (P<0.05) after vibration including: ellipse area (35.5%), root-mean-squared radial lean angle (17.9%), and path length (12.2%). Measures of non-linear stability control also increased (P<0.05) including Lyapunov exponent (8.78%), stability diffusion analysis (1.95%), and Hurst rescaled range analysis (5.2%). INTERPRETATION: Whole-body vibration impaired postural control of the trunk as evidenced by the increase in kinematic variance and non-linear stability control measures during unstable sitting. These findings imply an impairment in spinal stability and a mechanism by which vibration may increase low back injury risk. Future work should investigate the effects of whole-body vibration on the anatomical and neuromuscular components that contribute to spinal stability.
机译:背景:腰背疾病及其预防对公司及其员工至关重要。全身振动被认为是下背部疾病的危险因素,但是尚不清楚引起这种增加风险的神经肌肉,生物力学和/或生理机制。这项研究的目的是测量不稳定的就座平衡期间就座全身振动对躯干姿势控制的急性影响。方法:二十一名健康受试者(年龄:23​​岁(标准差4岁))在设计用于测量躯干姿势控制的摇椅上进行了测试。运动方差和非线性稳定性控制的测量基于就座全身振动30分钟前后的座角(带宽= 2-20 Hz,均方根振幅= 1.15m / s(2))。结果:振动后,不稳定坐姿平衡的运动学变化的所有度量值均增加了(P <0.05),包括:椭圆面积(35.5%),均方根径向倾斜角(17.9%)和路径长度(12.2%)。非线性稳定性控制的措施也有所提高(P <0.05),包括Lyapunov指数(8.78%),稳定性扩散分析(1.95%)和Hurst重标范围分析(5.2%)。解释:全身振动削弱了躯干的姿势控制,这在不稳定坐姿期间运动学方差的增加和非线性稳定性控制措施得到了证明。这些发现暗示着脊柱稳定性的损害以及振动可能增加低背伤风险的机制。未来的工作应研究全身振动对有助于脊柱稳定性的解剖和神经肌肉成分的影响。

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