首页> 外文会议>12th Mediterranean conference on medical and biological engineering and computing 2010 >Investigating the EEG Alpha Band during Kinesthetic and Visual Motor Imagery of the Spike Volleyball Movement
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Investigating the EEG Alpha Band during Kinesthetic and Visual Motor Imagery of the Spike Volleyball Movement

机译:在穗状排球运动的运动和视觉运动图像中研究脑电图阿尔法带

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摘要

Motor Imagery (MI) is the mental simulation of motor tasks and its execution may recover a motor planning in the central nervous system. The purpose of this study was to analyze the changes along trials of Motor Imagery (MI) in Kin-esthetic (KMI) and Visual (V MI) modalities. The casuistry initially consisted of 15 right-handed male volleyball athletes (AG) and 18 non-athletes (NAG). By previously applying MIQ-R, 3 subjects from NAG were dismissed of the study due to their low questionnaire score. Both groups performed 30 trials of KMI and VMI of spike volleyball movement, intermixed with mental countdown (REF). The t-test (a = 0.05) resulted in similar MIQ-R mean scores for both groups, although AG demonstrated greater facility to imagine the volleyball task than NAG. Each EEG free-artifact signal was subdivided in three sequences (SI, S2 and S3) with 8 epochs each. Wilcoxon paired tests (a = 0.05) of the EEG power spectrum in the vicinity of alpha peak (ABP) suggests habituation during initial trial (SI) mainly for athletes. The comparisons between REF and KMI using the spectral F-test (SFT with a = 0.05) indicates the left occipital (athletes) and parietal (non-athletes) sites as those in which SFT>SFTcn-,. Based on such results, one can conclude that the KMI modality promotes more cortical changes than VMI, particularly for non-athletes. These findings suggest a different learning process of MI execution of repetitive sequences, related to previous knowledge of the real task.
机译:运动影像(MI)是运动任务的心理模拟,其执行可能会恢复中枢神经系统的运动计划。这项研究的目的是分析运动图像(MI)在动感(KMI)和视觉(V MI)模式中的变化。最初由15名右撇子男运动员(AG)和18名非运动员(NAG)组成。通过先前使用MIQ-R,由于问卷得分较低,因此将3名来自NAG的受试者从研究中排除了。两组均进行了30次针对排球运动的KMI和VMI以及精神倒数(REF)的试验。 t检验(a = 0.05)导致两组的MIQ-R平均得分相似,尽管AG比NAG展示了更多的想象排球任务的能力。将每个EEG自由伪像信号细分为三个序列(S1,S2和S3),每个序列有8个历元。对Alpha峰(ABP)附近的EEG功率谱进行Wilcoxon配对测试(a = 0.05),表明在初始试验(SI)期间,习惯于习惯于运动员。 REF和KMI之间的比较使用光谱F检验(SFT的a = 0.05)表明左枕(运动)和顶叶(非运动)部位为SFT> SFTcn- ,。根据这样的结果,可以得出结论,特别是对于非运动员,KMI方式比VMI促进了更多的皮质改变。这些发现表明,重复执行序列的MI的学习过程与实际任务的先前知识有关。

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