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The effect of lower limb muscle fatigue on obstacle negotiation during walking in older adults

机译:下肢肌肉疲劳对老年人行走过程中障碍物协商的影响

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Tripping over obstacles is a common cause of falls in older adults, and muscle fatigue, which can alter walking patterns, may add to this risk. To date, no study has examined the effect of lower limb muscle fatigue on obstacle negotiation in older adults. 30 older adults (13 women, aged 78.3 [6.2] years) negotiated a 12. m obstacle course, while completing a visual secondary task, under two randomized conditions: rested or fatigued. For the fatigue condition, participants performed a repeated sit-to-stand movement, as fast as possible, until they could no longer continue. Participants then immediately began walking trials. Kinematic and kinetic data were collected on approach to, during, and after crossing a height-adjustable target obstacle (10% and 20% of leg length). Repeated measures ANOVA showed a statistically significant increase in lead limb vertical loading rate after stepping over the 10% obstacle when fatigued, relative to rested (. P=. 0.046). No other significant between-condition differences (>0.05) were observed for the other kinematic variables when negotiating the 10% obstacle. Furthermore, no significant between-condition differences (. P>. 0.05) were observed for any kinetic or kinematic variables when negotiating the 20% obstacle. This study describes a feasible method for investigating the consequences of lower limb muscle fatigue on obstacle crossing. The current finding of increased vertical loading rate when fatigued supports the need for further investigation into the effect of muscle fatigue on gait under different environmental conditions, fatiguing a range of muscles, analyzing a more comprehensive array of kinetic and kinematic measures, and in healthy and clinical populations.
机译:绊倒是老年人跌倒的常见原因,而肌肉疲劳会改变步行方式,可能会增加这种风险。迄今为止,尚无研究检查下肢肌肉疲劳对老年人障碍协商的影响。 30名老年人(13名妇女,年龄78.3 [6.2]岁)在两个随机条件下(休息或疲倦)在完成视觉次要任务时协商了12米障碍路线。对于疲劳状况,参与者尽可能快地重复进行从坐到站的运动,直到他们不再继续。然后,参与者立即开始步行试验。在跨越高度可调的目标障碍物(腿长的10%和20%)时,接近过程中和之后,收集了运动和动力学数据。重复测量ANOVA显示,疲劳时跨过10%障碍物后,相对于休息,铅肢垂直负荷率有统计学上的显着提高(。P =。0.046)。协商10%障碍时,其他运动学变量之间未观察到其他显着的条件间差异(> 0.05)。此外,在谈判20%障碍物时,对于任何动力学或运动学变量,均未观察到显着的条件间差异(。P> 0.05)。这项研究描述了一种可行的方法,用于研究下肢肌肉疲劳对障碍物穿越的后果。当前发现疲劳时增加垂直负荷率的发现支持进一步研究在不同环境条件下肌肉疲劳对步态的影响,疲劳一系列肌肉,分析更全面的动力学和运动学方法以及健康和临床人群。

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