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Effects of visual and cognitive interference on joint contributions in perturbed standing: a temporal and spectral analysis

机译:视觉和认知干扰对站立状态下关节贡献的影响:时间和频谱分析

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摘要

Postural balance requires using joint strategies which may be changed from normal conditions by interfering with the sensory information. The goal of the present study was to quantitatively evaluate the role of the joint mechanisms during perturbed stance. Visual and cognitive interference was imposed to sixteen healthy young males under rotational toes-down or up perturbations. Power spectral analysis was employed to distinguish the joint contribution and their in- or out-phase co-works. Results showed that addition of cognitive loads reduce the stability by increasing the center of mass (CoM) power to three times greater. Besides the CoM, the knee and hip powers were also significantly enhanced by the cognitive loads (p .004), but the ankle was not influenced by cognition involvement (p .05). Elimination of the vision had lower effect on the time and spectral functions of the knee and hip while the ankle rotations were increased due to the lack of visual feedback (p = .001). The toes-down perturbations resulted in more prominent contribution of the knee while the toes-up evoked the hip joint to keep the balance more than the other joints. Addition of the cognitive loads hindered the reactions of the joint mechanisms and vision caused more conservative responses of the joints.
机译:姿势平衡需要使用可能会通过干扰感觉信息而从正常状况改变的联合策略。本研究的目的是定量评估关节运动过程中关节作用的作用。在旋转的脚趾头向下或向上的扰动下,对16名健康的年轻男性施加了视觉和认知干扰。功率谱分析用于区分联合贡献及其同相或异相协同工作。结果表明,增加认知负荷会通过将质心(CoM)功率提高到三倍来降低稳定性。除CoM之外,认知负荷也显着增强了膝盖和髋部的力量(p <.004),但踝关节不受认知参与的影响(p> .05)。消除视力对膝盖和髋部的时间和频谱功能的影响较小,而由于缺乏视觉反馈而使踝关节旋转增加(p = .001)。脚趾向下的扰动导致膝盖的突出贡献,而脚趾向上的诱发髋关节比其他关节保持更多的平衡。认知负荷的增加阻碍了关节机制的反应,并且视觉导致关节的保守反应。

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