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游泳运动员视觉和动觉意象的脑电图地形图

EEG Topographic Mapping of Visual and Kinesthetic Imagery in Swimmers.

作者信息

Wilson V E, Dikman Z, Bird E I, Williams J M, Harmison R, Shaw-Thornton L, Schwartz G E

机构信息

York University, 72 University Ave W., Guelph, ON, N1G 1N7, Canada.

Private Practice, Bellingham, WA, USA.

出版信息

Appl Psychophysiol Biofeedback. 2016 Mar;41(1):121-7. doi: 10.1007/s10484-015-9307-8.

Abstract

This study investigated differences in QEEG measures between kinesthetic and visual imagery of a 100-m swim in 36 elite competitive swimmers. Background information and post-trial checks controlled for the modality of imagery, swimming skill level, preferred imagery style, intensity of image and task equality. Measures of EEG relative magnitude in theta, low (7-9 Hz) and high alpha (8-10 Hz), and low and high beta were taken from 19 scalp sites during baseline, visual, and kinesthetic imagery. QEEG magnitudes in the low alpha band during the visual and kinesthetic conditions were attenuated from baseline in low band alpha but no changes were seen in any other bands. Swimmers produced more low alpha EEG magnitude during visual versus kinesthetic imagery. This was interpreted as the swimmers having a greater efficiency at producing visual imagery. Participants who reported a strong intensity versus a weaker feeling of the image (kinesthetic) had less low alpha magnitude, i.e., there was use of more cortical resources, but not for the visual condition. These data suggest that low band (7-9 Hz) alpha distinguishes imagery modalities from baseline, visual imagery requires less cortical resources than kinesthetic imagery, and that intense feelings of swimming requires more brain activity than less intense feelings.

摘要

本研究调查了36名优秀竞技游泳运动员在100米游泳的动觉意象和视觉意象之间脑电定量分析指标的差异。背景信息和试验后检查对意象方式、游泳技能水平、偏好的意象风格、意象强度和任务均等性进行了控制。在基线、视觉和动觉意象期间,从19个头皮部位采集了θ波、低α波(7 - 9赫兹)、高α波(8 - 10赫兹)以及低β波和高β波的脑电图相对幅值测量数据。在视觉和动觉条件下,低α波段的脑电定量分析幅值相对于基线时在低波段α波处有所衰减,但在其他波段未观察到变化。与动觉意象相比,游泳运动员在视觉意象期间产生的低α脑电幅值更多。这被解释为游泳运动员在产生视觉意象方面效率更高。报告意象强度强烈(动觉)而非较弱的参与者具有较低的低α幅值,即使用了更多的皮质资源,但在视觉条件下并非如此。这些数据表明,低波段(7 - 9赫兹)α波可将意象方式与基线区分开来,视觉意象比动觉意象需要更少的皮质资源,并且强烈的游泳感觉比不那么强烈的感觉需要更多的大脑活动。

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