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来自发光二极管闪光的短潜伏期视觉诱发电位。

Short latency visual evoked potentials to flashes from light-emitting diodes.

作者信息

Pratt H, Bleich N, Martin W H

机构信息

Evoked Potentials Laboratory, Technion-Israel Institute of Technology, Haifa, Israel.

出版信息

Electroencephalogr Clin Neurophysiol. 1995 Nov;96(6):502-8. doi: 10.1016/0013-4694(95)00089-h.

Abstract

Short latency visual evoked potentials (SVEPs) have been described in response to high-intensity, strobe flashes. High-intensity flashes can now be generated from goggle-mounted light emitting diodes (LEDs) and the SVEPs to such flashes have been shown to be reproducible across subjects, avoiding photic spread to the examination room and acoustical artifacts from the strobe stimulator. In this study, SVEPs from multichannel records are described in terms of normative latencies and amplitudes, as well as scalp distributions, to explore their generators. Potentials were recorded from 10 young male subjects, from 16 scalp locations, in response to flashes from goggle-mounted LEDs. Flashes were presented to each eye in turn, as well as binocularly. The latencies, scalp distributions and intersubject variabilities of the LED evoked SVEPs were similar to those obtained with strobe flashes. SVEP components were divided into 3 groups, according to their latency and the electrodes at which they were recorded with the largest amplitudes: periocular (under 40 msec latency), fronto-central (40-55 msec) and parieto-occipital (55-80 msec latency). The scalp distributions observed in this study suggest subcortical generators along the visual pathway, beginning at the retina. The use of goggle-mounted LEDs should promote routine evaluation of the integrity of the visual pathway between retina and cortex using SVEPs.

摘要

短潜伏期视觉诱发电位(SVEPs)已被描述为对高强度频闪闪光的反应。现在可以通过安装在护目镜上的发光二极管(LED)产生高强度闪光,并且已证明对这种闪光的SVEPs在不同受试者之间具有可重复性,避免了光扩散到检查室以及频闪刺激器产生的声学伪影。在本研究中,描述了来自多通道记录的SVEPs的正常潜伏期、振幅以及头皮分布,以探究其产生源。记录了10名年轻男性受试者在16个头皮位置对安装在护目镜上的LED闪光的反应。闪光依次呈现给每只眼睛以及双眼。LED诱发的SVEPs的潜伏期、头皮分布和受试者间变异性与频闪闪光获得的结果相似。根据潜伏期和记录到最大振幅的电极,SVEPs成分分为3组:眼周(潜伏期低于40毫秒)、额中央(40 - 55毫秒)和顶枕(潜伏期55 - 80毫秒)。本研究中观察到的头皮分布表明,沿着视觉通路从视网膜开始存在皮质下产生源。使用安装在护目镜上的LED应该会促进使用SVEPs对视网膜和皮质之间视觉通路完整性的常规评估。

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