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从动觉和视觉角度看运动想象能力的任务无关性电生理关联

Task-independent Electrophysiological Correlates of Motor Imagery Ability from Kinaesthetic and Visual Perspectives.

作者信息

Menicucci Danilo, Di Gruttola Francesco, Cesari Valentina, Gemignani Angelo, Manzoni Diego, Sebastiani Laura

机构信息

University of Pisa, Italy.

IMT, School of Advanced Studies, Lucca, Italy.

出版信息

Neuroscience. 2020 Sep 1;443:176-187. doi: 10.1016/j.neuroscience.2020.07.038. Epub 2020 Jul 28.

Abstract

Motor imagery (MI) ability is highly subjective, as indicated by the individual scores of the MIQ-3 questionnaire, and poor imagers compensate for the difficulty in performing MI with larger cerebral activations, as demonstrated by MI studies involving hands/limbs. In order to identify general, task-independent MI ability correlates, 16 volunteers were stratified with MIQ-3. The scores in the kinaesthetic (K) and 1st-person visual (V) perspectives were associated with EEG patterns obtained during K-MI and V-MI of the same complex MIQ-3 movements during these MI tasks (Spearman's correlation, significance at <0.05, SnPM corrected). EEG measures were relative to rest (relaxation, closed eyes), and based on six electrode clusters both for band spectral content and connectivity (Granger causality). Lower K-MI ability was associated with greater theta decreases during tasks in fronto-central clusters and greater inward information flow to prefrontal clusters for theta, high alpha and beta bands. On the other hand, power band relative decreases were associated with V-MI ability in fronto-central clusters for low alpha and left fronto-central and both centro-parietal clusters for beta bands. The results thus suggest different computational mechanisms for MI-V and MI-K. The association between low alpha/beta desynchronization and V-MIQ scores and between theta changes and K-MIQ scores suggest a cognitive effort with greater cerebral activation in participants with lower V-MI ability. The association between information flow to prefrontal hub and K-MI ability suggest the need for a continuous update of information to support MI-related executive functions in subjects with poor K-MI ability.

摘要

运动想象(MI)能力具有高度主观性,这由MIQ-3问卷的个体得分表明,并且如涉及手/肢体的MI研究所示,想象能力较差者会通过更大的大脑激活来弥补执行MI的困难。为了确定一般的、与任务无关的MI能力相关因素,16名志愿者根据MIQ-3进行了分层。在这些MI任务中,动觉(K)和第一人称视觉(V)视角的得分与在相同复杂MIQ-3动作的K-MI和V-MI期间获得的脑电图模式相关(斯皮尔曼相关性,显著性<0.05,经SnPM校正)。脑电图测量相对于静息状态(放松、闭眼),基于六个电极簇进行频段谱内容和连通性(格兰杰因果关系)分析。较低的K-MI能力与额中央簇在任务期间更大的θ波下降以及θ波、高α波和β波向前额叶簇的更大内向信息流相关。另一方面,低α波频段在额中央簇以及β波频段在左额中央簇和中央顶叶簇的功率带相对下降与V-MI能力相关。因此,结果表明MI-V和MI-K存在不同的计算机制。低α/β去同步化与V-MIQ得分之间以及θ波变化与K-MIQ得分之间的关联表明,V-MI能力较低的参与者在认知努力时大脑激活程度更高。向前额叶中枢的信息流与K-MI能力之间的关联表明,K-MI能力较差的受试者需要持续更新信息以支持与MI相关的执行功能。

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