Dynamic red blindness as evidenced by event-related brain potentials

Z. Jiahua, Zhang Qiang, Yao Junxia, Zheng Jin-e, Liu Jun, Huang Shiang, Xie Ying, Yang Zhong-le
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Abstract

To investigate the characteristics of dynamic color processing, we adopted two patterns of visual stimulus that were "onset-offset" which reflected static color stimulus and "sustained moving" without abrupt mode which reflected dynamic color stimulus to evoke event-related brain potentials (ERPs) of both normal and abnormal subjects. ERPs were recorded by neuroscan system and analyzed to uncover the follow results. In normal group, ERPs in response to dynamic red stimulus were characterized by frontal positive amplitudes with a latency of about 180 ms and the peak latency of the late positive potential (LPP) in a time window between 290 and 580 ms. In abnormal group and singularly individual of normal group, ERPs in response to dynamic red stimulus were fully lost and characterized by vanished amplitudes between 0 and 800 ms. ERPs of two groups in response to dynamic green and blue stimulus were the same as ERPs of the normal group in response to red stimulus. In comparison with, ERPs of the two groups in response to static red, green and blue stimulus were not different, which were only characterized by a peak latency of LPP in a time window between 350 and 650 ms. Our results firstly pointed to the view that a novel phenomena that the above some subjects could not completely apperceive a sort of dynamic red stimulus by ERPs was observed and called "dynamic red blindness". Furthermore, our results also suggested that low-frequency ERPs induced by "sustained moving" maybe a good and new method for testing dynamic color perception competence.
动态红盲的证据是事件相关脑电位
为了研究动态色彩加工的特点,我们采用反映静态色彩刺激的“起跳-偏移”和反映动态色彩刺激的“持续移动”两种视觉刺激模式来激发正常和异常受试者的事件相关脑电位(ERPs)。通过神经扫描系统记录erp并进行分析,得出以下结果。正常组在动态红色刺激下的erp表现为额叶正电位,潜伏期约为180 ms,晚正电位潜伏期在290 ~ 580 ms之间。在异常组和正常组单一个体中,动态红色刺激的erp完全消失,其特征是在0 ~ 800 ms之间消失。两组在动态绿色和蓝色刺激下的erp与正常组在红色刺激下的erp相同。与之相比,两组在静态红、绿、蓝刺激下的erp无显著差异,仅在350 ~ 650 ms的时间窗内存在LPP的峰值潜伏期。我们的研究结果首先指出了一种新的现象,即上述部分被试不能通过erp完全感知一种动态红色刺激,称为“动态红盲”。此外,我们的研究结果还表明,“持续运动”诱发的低频erp可能是测试动态色彩感知能力的一种良好的新方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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