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[视觉表象经验对脑电图空间组织的影响]

[The influence of visual imagery experience on EEG spatial organization].

作者信息

Sviderskaia N E, Taratynova G V, Kozhedub R G

出版信息

Zh Vyssh Nerv Deiat Im I P Pavlova. 2005 Nov-Dec;55(6):812-21.

Abstract

The comparison of EEG spatial organization between groups of 23 students of graphic arts department ("professional" subjects) and 39 subjects of another specialization ("non-professional" subjects) was made in order to find EEG correlates of visual imagery experience. Changes in the spatial organization of biopotentials (spatial synchronization and spatial disorder, spectral power and coherence) were analyzed while subjects mentally composed visual images from two simple elements, right angle and oblique line. The total number of elements presented for the image composition increased with each subsequent task (in total, four tasks were presented) from the number adequate to simultaneous perception and conscious processing (less than 7 +/- 2) to a much higher number. Intergroup differences, especially, in the degree of the spatial disorder (non-linear processes), were most evident under conditions when the subjects operated with a greater number of elements (tasks 3 and 4). This parameter increased more rapidly in "professionals" than in "non-professionals". These changes were most pronounced in the right anterior cortex. In "non-professional" subjects, spatial synchronization (linear processes) increased in the right posterior area. In "professional" subjects, coherence and spectral power increased in a greater number of narrow EEG frequency subbands than in "non-professional" subjects. The findings suggest that the imagery performance in subjects with visual imagery experience involves complicated neurodynamic processes such as non-linear dynamics and numerous EEG spatial resonance systems.

摘要

为了找到视觉意象体验的脑电图相关因素,对23名平面艺术系学生(“专业”受试者)和39名其他专业受试者(“非专业”受试者)的脑电图空间组织进行了比较。当受试者在脑海中用直角和斜线这两个简单元素构建视觉图像时,分析了生物电位空间组织的变化(空间同步和空间紊乱、频谱功率和相干性)。图像构成中呈现的元素总数随着后续任务(总共呈现了四项任务)的增加而增加,从足以同时感知和有意识处理的数量(少于7±2)增加到更高的数量。组间差异,尤其是在空间紊乱程度(非线性过程)方面,在受试者处理更多元素的条件下(任务3和4)最为明显。该参数在“专业人员”中比在“非专业人员”中增加得更快。这些变化在右前皮质最为明显。在“非专业”受试者中,右后区域的空间同步(线性过程)增加。在“专业”受试者中,与“非专业”受试者相比,更多狭窄的脑电图频率子带中的相干性和频谱功率增加。研究结果表明,有视觉意象体验的受试者的意象表现涉及复杂的神经动力学过程,如非线性动力学和众多脑电图空间共振系统。

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