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A-19. Visual evoked potentials: Basic technology and clinical applications

机译:A-19。 视觉诱发潜力:基础技术和临床应用

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摘要

Visual information is processed simultaneously via multiple parallel channels and each channel constitutes a set of sequential processes. The visual evoked potentials (VEPs) are the evoked electrophysiological potential that can be extracted, using signal averaging, from the electroencephalographic activity recorded at the scalp. VEPs can provide important diagnostic information regarding the functional integrity of the visual pathways and the visual cortex. Commonly used visual stimuli are flashing lights or pattern reversal (checkerboards or gratings) on the TV monitor or video screen. Pattern reversal is the preferred technique for most clinical purposes. The results of pattern reversal stimuli are less variable in the waveform and the timing than the results elicited by other stimuli. The pattern onset/offset technique can be useful in the detection of malingering and in patients with nystagmus, and the flash VEP is particularly useful when optical factors or poor cooperation make the use of pattern stimulation inappropriate. In addition, pattern reversal VEP to full-field stimulation is best suited to evaluate anterior visual pathways while hemi-field VEP is most effective in the assessment of chiasmal and post-chiasmal functions. This article presents the basic technology and current standard for flash and pattern reversal VEP recording methods based on the major parallel pathways of the visual system from the retina to the primary visual cortex via lateral geniculate nucleus that receive visual input.
机译:通过多个并行通道同时处理可视信息,并且每个信道构成一组连续过程。视觉诱发电位(VEPS)是诱发的电生理学电位,其可以使用信号平均从头皮记录的脑电图活动中提取。 VEPS可以提供​​关于视觉途径的功能完整性和视觉皮质的重要诊断信息。常用的视觉刺激是在电视监视器或视频屏幕上闪烁的灯光或图案逆转(棋盘或光栅)。图案反转是大多数临床目的的优选技术。图案反转刺激的结果在波形中的变量较小,而且时间比其他刺激引发的结果。模式发作/偏移技术可用于检测恶性和眼球菌患者,当光学因素或合作差的使用时,闪光VEP是特别有用的。此外,对全场刺激的模式反转VEP最适合评估前视途径,而Hemi-Field Vep在评估Chiasmal和Chiasmal功能的评估中最有效。本文介绍了基于视觉系统的主要平行通路,通过从视网膜到主要视觉皮层的主要平行通路,通过接受视觉输入的横向胰核,基本技术和目前的闪光和模式反转VEP记录方法。

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