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Towards the importance of minimum toe clearance in level ground walking in a healthy elderly population

机译:在健康的老年人口中,最低脚趾清除在水平地面行走中的重要性

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Tripping is presumed to be the principal cause for falls during walking. At minimum toe clearance, the potential for trip-related falls is considered to be highest. Thus, controlling minimum toe clearance is essential for walking without tripping. In theory, the central nervous system should therefore give priority to accurate control of the variability in minimum toe clearance, as compared to other gait parameters, since people tend to only modify variability in any given task if it interferes with the task performance. The aim of this study was to determine whether elderly individuals show less increase in variability of minimum toe clearance during a dual-task condition (where an increase of gait variability is provoked), while allowing a larger range of variability in the other gait parameters. Forty elderly participants walked back and forth on a 25 m long track for five minutes. They then walked a second time performing an additional cognitive task. The variability in stride time, stride length and minimum toe clearance as well as dual-task costs of each gait parameter were calculated for each walk. The variability in minimum toe clearance did not change during dual task-walking, whereas the variability of stride length and stride time increased, showing dual-task costs of about 66% and 84%, respectively. To avoid additional detrimental load on the central nervous system, the modification of task-irrelevant variability may be tolerated during dual-task conditions, whereas minimum toe clearance is controlled with high priority.
机译:绊倒被认为是步行中跌倒的主要原因。在最小的脚趾间隙,与行程相关的跌倒的可能性被认为是最高的。因此,控制最小脚趾间隙对于不绊倒的行走至关重要。从理论上讲,与其他步态参数相比,中枢神经系统应优先控制最小脚趾间隙的变异性,因为人们倾向于仅在任何给定任务中改变变异性(如果这会干扰任务绩效)。这项研究的目的是确定老年人是否在双任务情况(引起步态变异性增加)下显示最小的脚趾间隙变异性增加较少,同时允许其他步态参数具有较大范围的变异性。 40名老年参与者在25 m长的轨道上来回走了五分钟。然后,他们第二次走路来执行其他认知任务。计算每次步行的步幅时间,步幅长度和最小脚趾间隙的变异性以及每个步态参数的双重任务成本。在双重任务行走过程中,最小脚趾间隙的变异性没有变化,而步幅长度和步幅时间的变异性却增加了,显示出双重任务成本分别约为66%和84%。为了避免对中枢神经系统造成额外的有害负荷,在双任务情况下可以容忍与任务无关的变异性的修改,而最小的脚趾间隙优先控制。

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