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Role of the Frontal Cortex in Standing Postural Sway Tasks While Dual-Tasking: A Functional Near-Infrared Spectroscopy Study Examining Working Memory Capacity

机译:双重皮质在姿态摇摆任务中的作用,而双任务:功能近红外光谱研究检查工作记忆容量

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Posture control during a dual-task involves changing the distribution of attention resources between the cognitive and motor tasks and involves the frontal cortex working memory (WM). The present study aimed to better understand the impact of frontal lobe activity and WM capacity in postural control during a dual-task. High and low WM-span groups were compared using their reading span test scores. High and low WM capacity were compared based on cognitive and balance performance and hemoglobin oxygenation (oxyHb) levels during standing during single (S-S), standing during dual (S-D), one leg standing during single (O-S), and one leg standing during dual (O-D) tasks. For sway pass length, significant difference in only the O-D task was observed between both groups. oxyHb levels were markedly increased in the right dorsolateral prefrontal cortex and supplementary motor area in the high-span group during a dual-task. Therefore, WM capacity influenced the allocation of attentional resources and motor performance.
机译:双重任务期间的姿势控制涉及改变认知和电机任务之间的注意力资源分布,并涉及额度皮质工作存储器(WM)。本研究旨在更好地了解双重任务期间宫内瓣活动和WM容量的影响。使用其阅读跨度测试评分进行比较高和低WM跨度组。在单个(SS)期间,基于认知和平衡性能和血红蛋白氧合(氧气氧)和血红蛋白氧合(OXYHB)水平进行比较,站立在双(SD)期间,在单次(OS)期间站立的一条腿和一条腿站立(OD)任务。对于摇摆通过长度,在两个组之间仅观察到O-D任务的显着差异。在双重任务期间,在高跨度群体中的右侧背侧前额叶皮质和补充电动机面积在右侧前额前皮质和补充电动机面积显着增加氧气水平。因此,WM容量影响了注意力资源和电机性能的分配。

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