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Unveilling the cerebral and sensory contributions to automatic postural control during dual-task standing

机译:揭示双任务站立自动姿势控制的脑和感官贡献

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Objectives: The postural control dual-task literature has demonstrated greater postural stability during dual-task in comparison to single task (i.e., standing balance alone through the examination of multiple kinetic and kinematic measures. This improve stability is thought to reflect an automatic mode of postural control during dual-task. Recently, sample entropy (SampEn) and wavelet discrete transform have supported the claim of automaticity, as higher SampEn values and a shift toward increased contributions from automatic sensory systems have been demonstrated in dual-task settings. In order to understand the cortical component of postural control, functional near-infrared spectroscopy has been used to measure cortical activation during postural control conditions. However, the neural correlates of automatic postural behaviour have yet to be fully investigated. Therefore, the purpose of this study is to confirm the presence of automatic postural control through static and dynamic balance measures, and to investigate the prefrontal cortex activation when concurrently performing quiet standing and the auditory cognitive tasks of varied difficulty.
机译:目标:姿势控制的双任务文献已经证实双任务期间拥有更大的姿势稳定性相比,单任务(即通过多种动力学和运动学措施的检查独自站立平衡这提高稳定性被认为是反映了的自动模式。双任务期间姿势控制。最近,样本熵(SampEn)和小波离散变换都支持自动化的,该权利要求为更高SampEn值和朝向从自动感觉系统在双任务设置已被证明增加捐款的转变。为了理解姿势控制的皮层部件,功能性近红外光谱已被用于测量时的姿势控制条件皮质的活化。但是,自动姿势行为神经关联还没有被充分的调查。因此,本研究的目的是确认自动姿势控制的通过静态和动态b中的存在alance措施,并探讨前额叶皮层激活时同时执行安静站立和多样的难度的听觉认知任务。

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