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彩色图形起始视觉诱发电位的地形图。

Topography of the chromatic pattern-onset VEP.

作者信息

Gerth Christina, Delahunt Peter B, Crognale Michael A, Werner John S

机构信息

Department of Ophthalmology and Section of Neurobiology, Physiology and Behavior, University of California Davis, CA, USA.

出版信息

J Vis. 2003;3(2):171-82. doi: 10.1167/3.2.5.

Abstract

The chromatic pattern-onset VEP has been used successfully as a sensitive and objective technique to determine congenital and acquired color vision deficiency. It also has been applied to characterize development, maturation and aging of the chromatic visual pathways. Here we determine the topographic components of the full-field VEP using the multifocal technique. Recordings were made with the VERIS system that extracts topographic VEPs using a pseudorandom stimulus sequence. Chromatic pattern stimuli were presented in an onset-offset temporal sequence, with colors modulated along different axes in the MBDKL color space. Additional experiments were conducted to verify the S-cone axis for each observer and that our chromatic stimuli were close to isoluminant at different field locations. Our data show reliable and robust chromatic onset VEP responses for multiple retinal areas that conform to pattern-onset full-field VEP waveform characteristics. For stimuli with chromatic contributions, pattern-onsets produced reliable and consistent waveforms whereas for stimuli with large luminance contributions pattern-reversal stimuli were superior. Our method for recording chromatic multifocal pattern-onset VEPs holds promise for clinical application to detect and monitor early retinal and optic nerve changes related to aging and disease.

摘要

彩色图形起始视觉诱发电位已成功用作一种灵敏且客观的技术,用于确定先天性和后天性色觉缺陷。它也已被应用于描绘彩色视觉通路的发育、成熟和老化特征。在此,我们使用多焦技术确定全视野视觉诱发电位的地形图成分。使用VERIS系统进行记录,该系统利用伪随机刺激序列提取地形图视觉诱发电位。彩色图形刺激以起始-偏移时间序列呈现,颜色在MBDKL颜色空间中沿不同轴调制。进行了额外的实验,以验证每个观察者的S-视锥细胞轴,以及我们的彩色刺激在不同视野位置接近等亮度。我们的数据显示,多个视网膜区域存在可靠且稳健的彩色起始视觉诱发电位反应,这些反应符合图形起始全视野视觉诱发电位波形特征。对于具有彩色成分的刺激,图形起始产生可靠且一致的波形,而对于具有大亮度成分的刺激,图形反转刺激更优。我们记录彩色多焦图形起始视觉诱发电位的方法有望应用于临床,以检测和监测与衰老和疾病相关的早期视网膜和视神经变化。

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