[二维模式和诱发电位的状态和复杂性相关对称识别]。

R Schmitt
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引用次数: 0

摘要

为了分析视觉模式的结构复杂性和操作性定义的认知状态对诱发电位的影响,进行了一些在线闭环实验。采用沃尔什函数生成的对称棋盘图案作为刺激。这种内在的对称性应该被主体所认识。根据刺激发生前1秒内测得的脑电频谱功率密度分布来定义状态。这两个状态值分别被标记为α波优势状态和非α波优势状态。根据alpha波优势状态的定义,整个频谱功率的70%必须包含在至少8 Hz至13 Hz的频率范围内。否则,刺激前脑电图被标记为非α波状态的概念。认知状态和结构复杂性对诱发电位的影响已被实验证实。在刺激发生后140 ~ 200 ms的时间范围内,诱发电位的幅值明显较高,这是由于刺激的复杂性较高所致。在刺激开始后280 ~ 400 ms内,α波优势状态诱发电位负性显著增强。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[State and complexity-dependent symmetry identification of 2-dimensional patterns and evoked potentials].

To analyse the influence of structural complexity of visual patterns and of an operationally defined cognitive state on evoked potentials some on--line closed--loop experiments were carried out. Symmetrical checkerboard patterns generated by means of Walsh functions were used as stimuli. The inherent symmetry should be recognized by the subjects. The state was defined on the basis of the spectral power density distribution of the EEG measured in the time interval of one second before the stimulus onset. The two state values were labeled by the state of alpha wave dominance and the state of non alpha wave dominance. According to the definition for the state of alpha wave dominance 70% of the whole spectral power must be contained in the frequency range from 8 Hz until 13 Hz at least. Otherwise the prestimulus EEG are labeled by the concept of non alpha wave state. The influence of the cognitive state and of the structural complexity on the evoked potentials has been verified experimentally. Significantly higher amplitudes of the evoked potentials in the time range of 140 ms until 200 ms after stimulus onset are due to higher complexity of the stimuli. The state of alpha wave dominance led to significantly stronger negativity of the evoked potentials in the range of 280 ms until 400 ms after stimulus onset.

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