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Effect of dual task type on gait and dynamic stability during stair negotiation at different inclinations

机译:双重任务类型对不同倾角楼梯谈判过程中步态和动态稳定性的影响

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摘要

Stair gait is a common daily activity with great potential risk for falls. Stairs have varying inclinations and people may perform other tasks concurrently with stair gait. This study investigated dual-task interference in the context of complex gait tasks, such as stair gait at different inclinations, a topic about which little is understood. We examined how secondary cognitive and manual tasks interfere with stair gait when a person concurrently performed tasks at different levels of complexity. Gait kinematic data and secondary task performance measures were obtained from fifteen healthy young males while ascending and descending a four-step staircase at three inclinations (17.7 degrees, 29.4 degrees, and 41.5 degrees) as well as level walking. They performed a cognitive task, 'backward digit recall', a manual task, 'carrying a cup of water' and a combination of the two tasks. Gait performance and dynamic stability were assessed by gait speed and whole body center of mass (COM) range of motion in the medial-lateral direction, respectively. No significant effect of the gait task on the cognitive task performance was observed. In contrast, stair walking adversely affected the performance of the manual task compared to level walking. Overall, more difficult postural and secondary tasks resulted in a decrease in gait speed and variation in COM displacement within normal range. Results suggest that COM displacement and gait alterations might be adopted to enhance the stability, and optimize the secondary task performance while walking under challenging circumstances. Our findings are useful for balance and gait evaluation, and for future falls prediction. (C) 2015 Elsevier B.V. All rights reserved.
机译:楼梯步态是日常的日常活动,有很大的跌倒风险。楼梯的倾斜度各不相同,人们可能会在步态同时执行其他任务。这项研究调查了在复杂步态任务(例如不同倾斜度的步态步态)下的双任务干扰,对此话题了解甚少。我们研究了当一个人以不同的复杂程度同时执行任务时,次要的认知和手动任务如何影响步态。从15名健康的年轻男性获得步态运动学数据和次要任务绩效指标,同时在三个倾斜度(17.7度,29.4度和41.5度)以及水平行走时使四步楼梯上升和下降。他们执行了一项认知任务,“倒数记忆”,一项手动任务,“一杯水”,以及两项任务的结合。步态表现和动态稳定性分别通过步态速度和全身质心(COM)在内侧-外侧方向的运动范围进行评估。没有观察到步态任务对认知任务绩效的显着影响。相反,与水平行走相比,楼梯行走对手动任务的性能产生不利影响。总体而言,较困难的姿势和次要任务导致步态速度下降,COM位移在正常范围内变化。结果表明,在有挑战性的环境中行走时,可以采用COM位移和步态改变来增强稳定性,并优化次要任务性能。我们的发现对于平衡和步态评估以及未来跌倒的预测很有用。 (C)2015 Elsevier B.V.保留所有权利。

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