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首页> 外文期刊>Gait & posture >Walking modality, but not task difficulty, influences the control of dual-task walking
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Walking modality, but not task difficulty, influences the control of dual-task walking

机译:步行态度,但不是任务困难,影响双重任务步行的控制

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Highlights ? We examined the effect of walking modality (overground and treadmill walking) on dual-task walking performance. ? Stride time variability is higher during overground walking compared to treadmill walking. ? The direction of the dual-task cost is dependent on walking modality. ? There is no difference in the perceived difficulty of the dual task between the two walking modalities. Abstract During dual-task gait, changes in the stride-to-stride variability of stride time (STV) are suggested to represent the allocation of cognitive control to walking . However, contrasting effects have been reported for overground and treadmill walking, which may be due to differences in the relative difficulty of the dual task. Here we compared the effect of overground and treadmill dual-task walking on STV in 18 healthy adults. Participants walked overground and on a treadmill for 120s during single-task (walking only) and dual-task (walking whilst performing serial subtractions in sevens) conditions. Dual-task effects on STV, cognitive task (serial subtraction) performance and perceived task difficulty were compared between walking modalities. STV was increased during overground dual-task walking, but was unchanged during treadmill dual-task walking. There were no differences in cognitive task performance or perceived task difficulty. These results show that gait is controlled differently during overground and treadmill dual-task walking. However, these differences are not solely due to differences in task difficulty, and may instead represent modality dependent control strategies.
机译:强调 ?我们研究了走路模型(往域和跑步机行走)对双任务走路性能的影响。还与跑步机行走相比,在地下行走期间,步幅时间变异较高。还双重任务成本的方向取决于步行模式。还两个步行方式之间的双重任务的难度没有差异。摘要在双重任务步态期间,提出了跨越时间(STV)的潮流变化的变化,以代表对行走的认知控制分配。然而,据报道了对比效果用于覆盖和跑步机行走,这可能是由于双重任务相对难度的差异。在这里,我们比较了在18名健康成年人的STV上的地下和跑步机双重任务的效果。参与者在单任务(仅行走)和双重任务期间走过120多岁的跑步机(步行)条件下的串行减半)。在步行模式之间比较了对STV,认知任务(串行减法)性能和感知任务难度的双任务效应。在跑步机双重任务步行期间,STV在地下双重任务走路时增加了。认知任务表现或感知任务难度没有差异。这些结果表明,在地下和跑步机双重任务步行期间,步态被控制。然而,这些差异不仅是由于任务困难的差异,而且可以代表模当依赖的控制策略。

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