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认知-运动双重任务干扰:神经关联的系统综述。

Cognitive-motor dual-task interference: A systematic review of neural correlates.

机构信息

Department of Medical Sciences, Surgical and Advanced Technologies G.F. Ingrassia, Section of Neurosciences, University of Catania, Italy; REVAL-Rehabilitation Research Centre, BIOMED-Biomedical Research Institute, Faculty of Medicine and Life Sciences, Hasselt University, Hasselt, Belgium.

REVAL-Rehabilitation Research Centre, BIOMED-Biomedical Research Institute, Faculty of Medicine and Life Sciences, Hasselt University, Hasselt, Belgium.

出版信息

Neurosci Biobehav Rev. 2017 Apr;75:348-360. doi: 10.1016/j.neubiorev.2017.01.010. Epub 2017 Jan 16.

Abstract

Cognitive-motor interference refers to dual-tasking (DT) interference (DTi) occurring when the simultaneous performance of a cognitive and a motor task leads to a percentage change in one or both tasks. Several theories exist to explain DTi in humans: the capacity-sharing, the bottleneck and the cross-talk theories. Numerous studies investigating whether a specific brain locus is associated with cognitive-motor DTi have been conducted, but not systematically reviewed. We aimed to review the evidences on brain activity associated with the cognitive-motor DT, in order to better understand the neurological basis of the CMi. Results were reported according to the technique used to assess brain activity. Twenty-three articles met the inclusion criteria. Out of them, nine studies used functional magnetic resonance imaging to show an additive, under-additive, over- additive, or a mixed activation pattern of the brain. Seven studies used near-infrared spectroscopy, and seven neurophysiological instruments. Yet a specific DT locus in the brain cannot be concluded from the overall current literature. Future studies are warranted to overcome the shortcomings identified.

摘要

认知-运动干扰是指当同时执行认知和运动任务时,一个或两个任务的百分比变化会发生双重任务(DT)干扰(DTi)。有几种理论可以解释人类的 DTi:能力共享、瓶颈和串扰理论。已经进行了许多研究来调查特定的大脑位置是否与认知-运动 DTi 相关,但没有系统地回顾。我们旨在回顾与认知-运动 DT 相关的大脑活动的证据,以便更好地理解 CMi 的神经基础。结果根据用于评估大脑活动的技术进行报告。有 23 篇文章符合纳入标准。其中,9 项研究使用功能磁共振成像显示大脑的附加、亚加性、过加性或混合激活模式。7 项研究使用近红外光谱和 7 项神经生理仪器。然而,从整体现有文献中无法得出大脑中特定的 DT 位置。需要进一步的研究来克服已确定的局限性。

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