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Dual-Task Does Not Increase Slip and Fall Risk in Healthy Young and Older Adults during Walking

机译:双重任务不会在步行期间在健康的年轻人和老年人的平均风险增加

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摘要

Dual-task tests can identify gait characteristics peculiar to fallers and nonfallers. Understanding the relationship between gait performance and dual-task related cognitive-motor interference is important for fall prevention. Dual-task adapted changes in gait instability/variability can adversely affect fall risks. Although implicated, it is unclear if healthy participants' fall risks are modified by dual-task walking conditions. Seven healthy young and seven healthy older adults were randomly assigned to normal walking and dual-task walking sessions with a slip perturbation. In the dual-task session, the participants walked and simultaneously counted backwards from a randomly provided number. The results indicate that the gait changes in dual-task walking have no destabilizing effect on gait and slip responses in healthy individuals. We also found that, during dual-tasking, healthy individuals adopted cautious gait mode (CGM) strategy that is characterized by reduced walking speed, shorter step length, increased step width, and reduced heel contact velocity and is likely to be an adaptation to minimize attentional demand and decrease slip and fall risk during limited available attentional resources. Exploring interactions between gait variability and cognitive functions while walking may lead to designing appropriate fall interventions among healthy and patient population with fall risk.
机译:双任务测试可以识别衰落和非降临者特有的步态特征。了解步态性能与双重任务相关的认知电机干扰之间的关系对于防止预防是重要的。双重任务适应步态不稳定/可变性的变化可能会对堕落风险产生不利影响。虽然牵连,但如果通过双任务步行条件修改了健康的参与者的堕落风险,则尚不清楚。七个健康的年轻人和七个健康的老年人被随机分配给正常的散步和双任务走话,具有滑动扰动。在双任务会话中,参与者从随机提供的号码开始并同时向后计算。结果表明,双任务行走的步态变化对健康个体的步态和滑动反应没有稳定的影响。我们还发现,在双重任务期间,健康的个人采用了谨慎的步态模式(CGM)策略,其特征在于步行速度降低,较短的步长,阶跃宽度,减少的后跟接触速度,并且可能是最小化的适应在有限的可用预防资源期间,注意力需求和降低滑倒和落下风险。探索步态变异性与认知功能之间的相互作用,同时行走可能导致在具有危险风险的健康和患者人口之间设计适当的堕落干预。

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  • 来源
    《Applied bionics and biomechanics》 |2017年第2017期|共12页
  • 作者单位

    Arizona State Univ Sch Biol &

    Hlth Syst Engn Ira A Fulton Sch Engn Locomot Res Lab Tempe AZ 85287 USA;

    Arizona State Univ Sch Biol &

    Hlth Syst Engn Ira A Fulton Sch Engn Locomot Res Lab Tempe AZ 85287 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 仿生学;
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