Polskaia Nadia, Richer Natalie, Dionne Eliane, Lajoie Yves
School of Human Kinetics, Faculty of Health Sciences, University of Ottawa, 125 University Avenue, Ottawa, ON K1N 6N5, Canada.
Gait Posture. 2015 Feb;41(2):454-8. doi: 10.1016/j.gaitpost.2014.11.009. Epub 2014 Nov 24.
Research has demonstrated clear advantages of using an external focus of attention in postural control tasks, presumably since it allows a more automatic control of posture to emerge. However, the influence of cognitive tasks on postural stability has produced discordant results. This study aimed to compare the effects of an internal focus of attention, an external focus of attention and a continuous cognitive task on postural control. Twenty healthy participants (21.4±2.6 years) were recruited for this study. They were asked to stand quietly on a force platform with their feet together in three different attentional focus conditions: an internal focus condition (minimizing movements of the hips), an external focus condition (minimizing movements of markers placed on the hips) and a cognitive task condition (silently counting the total number of times a single digit was verbalized in a 3-digit sequence comprised of 30 numbers). Results demonstrated improved stability while performing the cognitive task as opposed to the internal and external focus conditions, as evidenced by a reduction in sway area, sway variability in the anterior-posterior (AP) and medial-lateral (ML) directions, and mean velocity (ML only). Results suggest that the use of a continuous cognitive task permits attention to be withdrawn from the postural task, thereby facilitating a more automatic control of posture.
研究表明,在姿势控制任务中使用外部注意力焦点具有明显优势,大概是因为它能使姿势控制更自动地出现。然而,认知任务对姿势稳定性的影响却产生了不一致的结果。本研究旨在比较内部注意力焦点、外部注意力焦点和持续认知任务对姿势控制的影响。本研究招募了20名健康参与者(21.4±2.6岁)。他们被要求双脚并拢安静地站在一个测力平台上,处于三种不同的注意力焦点条件下:内部焦点条件(尽量减少臀部的运动)、外部焦点条件(尽量减少放置在臀部的标记物的运动)和认知任务条件(默默地数一个三位数序列中单个数字被读出的总次数,该序列由30个数字组成)。结果表明,与内部和外部焦点条件相比,在执行认知任务时稳定性得到了改善,这表现为摆动面积、前后(AP)和内外(ML)方向的摆动变异性以及平均速度(仅ML)的降低。结果表明,使用持续认知任务可以将注意力从姿势任务中转移出来,从而促进对姿势的更自动控制。