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任务范式对发育性协调障碍儿童运动想象能力的影响。

The influence of task paradigm on motor imagery ability in children with Developmental Coordination Disorder.

作者信息

Ferguson G D, Wilson P H, Smits-Engelsman B C M

机构信息

Faculty of Health Sciences, Department of Health and Rehabilitation Sciences, University of Cape Town, F45 Old Main Building, Groote Schuur Hospital, Observatory, Cape Town 7925, South Africa.

School of Psychology, Australian Catholic University, 115 Victoria Pde., Melbourne, VIC 3065, Australia.

出版信息

Hum Mov Sci. 2015 Dec;44:81-90. doi: 10.1016/j.humov.2015.08.016. Epub 2015 Aug 29.

DOI:10.1016/j.humov.2015.08.016
PMID:26319360
Abstract

Children with Developmental Coordination Disorder (DCD) have difficulty imagining movements such that they conform to the customary temporal constraints of real performance. We examined whether this ability is influenced by the choice of task used to elicit motor imagery (MI). Performance of typically developing (TD) (n=30) and children with DCD (n=30) was compared on two tasks: the Visually Guided Pointing Task (VGPT) and the Computerized Virtual Radial Fitts Task (C-VRFT). Since the VGPT places higher demands on executive functions like working memory but requires less spatial planning, we reasoned that the C-VRFT would provide a purer measure of motor imagery (or simulation). Based on our earlier work, we predicted that imagery deficits in DCD would more likely manifest on the C-VRFT. Results showed high correlations between tasks in terms of executed and imagined movement time suggest that both tasks measure MI ability. However, group differences were more pronounced in the imagined condition of the radial Fitts' task. Taken together, the more spatially complex C-VRFT appears to be a more sensitive measure of motor imagery, better discriminating between DCD and TD. Implications for theory and practice are discussed.

摘要

患有发育性协调障碍(DCD)的儿童在想象动作时存在困难,难以使其符合实际表现中惯常的时间限制。我们研究了这种能力是否会受到用于引发运动想象(MI)的任务选择的影响。在两项任务上比较了发育正常(TD)儿童(n = 30)和患有DCD的儿童(n = 30)的表现:视觉引导指向任务(VGPT)和计算机化虚拟径向菲茨任务(C-VRFT)。由于VGPT对工作记忆等执行功能的要求更高,但对空间规划的要求较低,我们推断C-VRFT将提供更纯粹的运动想象(或模拟)测量。基于我们早期的研究,我们预测DCD中的想象缺陷更可能在C-VRFT上表现出来。结果表明,在执行和想象的运动时间方面,任务之间存在高度相关性,这表明两项任务都能测量MI能力。然而,在径向菲茨任务的想象条件下,组间差异更为明显。综合来看,空间复杂度更高的C-VRFT似乎是运动想象更敏感的测量方法,能更好地区分DCD和TD。本文讨论了其对理论和实践的启示。

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