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运动起始和图形翻转诱发电位的对比度依赖性

Contrast dependence of motion-onset and pattern-reversal evoked potentials.

作者信息

Kubová Z, Kuba M, Spekreijse H, Blakemore C

机构信息

Department of Physiology, Medical Faculty of Charles University, Hradec Kralové, Czech Republic.

出版信息

Vision Res. 1995 Jan;35(2):197-205. doi: 10.1016/0042-6989(94)00138-c.

Abstract

This study deals with the effect of stimulus contrast, between 1.3% and 96%, on the visual evoked potentials (VEPs) for onset of motion and for pattern reversal of checkerboard stimuli. The VEPs for pattern reversal and for the onset of motion both contain an initial positive peak (P1; peak latency about 120 msec) followed by a later negative peak (N2; peak latency 160-200 msec). However the P1 peak dominates the pattern-reversal VEP when recorded from the midline occipital lead, where it is maximal, while the N2 peak is larger in the motion-onset VEP, especially when recorded from unipolar lateral occipital leads. Whereas the amplitude of the P1 peak in both the pattern-reversal VEP and the motion-onset VEP decreases with decreasing contrast (becoming undetectable at a contrast of about 2% for the motion-onset VEP), the amplitude of the N2 peak in both types of VEP does not vary significantly with contrast, above a contrast of 1.3%. The increase in peak latency with decreasing contrast is also more pronounced for the positive than the negative peaks of both types of VEP. Taking into account the high contrast sensitivity of the magnocellular system (thought to be involved in the processing of motion) compared with the parvocellular system (probably more concerned with the processing of form), our findings suggest that for both motion-onset and pattern-reversal VEPs the negative peak is attributable to the motion-processing magnocellular pathway and the positive peak to the form-processing parvocellular system.

摘要

本研究探讨了1.3%至96%的刺激对比度对运动起始和棋盘格刺激模式反转的视觉诱发电位(VEP)的影响。模式反转和运动起始的VEP均包含一个初始正峰(P1;峰潜伏期约120毫秒),随后是一个较晚的负峰(N2;峰潜伏期160 - 200毫秒)。然而,从中线枕部导联记录时,P1峰在模式反转VEP中占主导地位,在此处它最大,而在运动起始VEP中N2峰更大,尤其是从单极枕部外侧导联记录时。虽然模式反转VEP和运动起始VEP中P1峰的幅度都随对比度降低而减小(运动起始VEP在对比度约为2%时变得无法检测),但在对比度高于1.3%时,两种类型VEP中N2峰的幅度随对比度变化不显著。两种类型VEP的正峰相比负峰,随对比度降低峰潜伏期的增加也更明显。考虑到与小细胞系统(可能更关注形状处理)相比,大细胞系统(被认为参与运动处理)具有高对比度敏感性,我们的研究结果表明,对于运动起始和模式反转VEP,负峰归因于运动处理大细胞通路,正峰归因于形状处理小细胞系统。

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