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Dominant side in single-leg stance stability during floor oscillations at various frequencies

机译:在不同频率下的地板振动过程中,单腿姿态稳定性的优势面

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Background We investigated lateral dominance in the postural stability of single-leg stance with anteroposterior floor oscillations at various frequencies. Methods Thirty adults maintained a single-leg stance on a force platform for 20 seconds per trial. Trials were performed with no oscillation (static condition) and with anteroposterior floor oscillations (2.5-cm amplitude) at six frequencies: 0.25, 0.5, 0.75, 1.0, 1.25 and 1.5 Hz (dynamic condition). A set of three trials was performed on each leg in each oscillation frequency in random order. The mean speed of the center of pressure in the anteroposterior direction (CoPap) was calculated as an index of postural stability, and frequency analysis of CoPap sway was performed. Footedness for carrying out mobilizing activities was assessed with a questionnaire. Results CoPap speed exponentially increased as oscillation frequency increased in both legs. The frequency analysis of CoPap showed a peak <0.3 Hz at no oscillation. The frequency components at 0.25-Hz oscillation included common components with no oscillation and those at 1.5-Hz oscillation showed the maximum amplitude among all conditions. Postural stability showed no significant difference between left- and right-leg stance at no oscillation and oscillations ≤1.25 Hz, but at 1.5-Hz oscillation was significantly higher in the right-leg stance than in the left-leg stance. For the lateral dominance of postural stability at individual levels, the lateral difference in postural stability at no oscillation was positively correlated with that at 0.25-Hz oscillation (r?=?0.51) and negatively correlated with that at 1.5-Hz oscillation (r?=?-0.53). For 70% of subjects, the dominant side of postural stability was different at no oscillation and 1.5-Hz oscillation. In the subjects with left- or right-side dominance at no oscillation, 94% or 38% changed their dominant side at 1.5-Hz oscillation, with a significant difference between these percentages. In the 1.5-Hz oscillation, 73% of subjects had concordance between the dominant side of postural stability and that of mobilizing footedness. Conclusion In static conditions, there was no lateral dominance of stability during single-leg stance. At 1.5-Hz oscillation, the highest frequency, right-side dominance of postural stability was recognized. Functional role in supporting leg may be divided between left and right legs according to the change of balance condition from static to dynamic.
机译:背景我们研究了在不同频率下,前后足底摆动的单腿姿势姿势稳定性中的横向优势。方法30名成年人在每次试验中在力量平台上保持单腿姿势20秒钟。试验在以下六个频率下无振动(静态)和前后地板振动(振幅为2.5 cm):0.25、0.5、0.75、1.0、1.25和1.5 Hz(动态条件)。以随机顺序在每个振动频率的每条腿上进行了三个试验。计算前后方向的压力中心的平均速度(CoPap)作为姿势稳定性的指标,并进行CoPap摇摆的频率分析。用问卷调查进行动员活动的基础。结果CoPap速度随着两条腿的振荡频率增加而呈指数增加。 CoPap的频率分析显示无振荡时的峰值<0.3 Hz。 0.25 Hz振荡的频率分量包括无振荡的常见分量,而1.5 Hz振荡的频率分量在所有条件下均显示出最大幅度。在没有振荡和振荡≤1.25 Hz时,姿势稳定性在左腿和右腿之间没有显着差异,但在1.5 Hz时,右腿的振荡明显高于左腿。对于各个水平姿势稳定性的横向优势,无振荡时姿势稳定性的侧向差异与0.25Hz振荡时的正相关(r≥0.51)和与1.5Hz振荡时的负相关(r≥0.51)呈负相关。 =?-0.53)。对于70%的受试者,姿势稳定性的主要方面在无振荡和1.5 Hz振荡的情况下有所不同。在无振荡时具有左侧或右侧优势的受试者中,有94%或38%的受试者在1.5 Hz振荡时改变了其优势侧,这些百分比之间存在显着差异。在1.5 Hz的振荡中,73%的受试者在姿势稳定性的主要方面和动员脚的一致性方面是一致的。结论在静态条件下,单腿姿势没有横向稳定性优势。在1.5 Hz振荡下,可以看到最高频率的姿势稳定性右侧占主导地位。支撑腿的功能角色可以根据平衡条件从静态到动态的变化分为左右腿。

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