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[人类对图形和均匀场刺激的瞬态和稳态视网膜电图及视觉诱发电位]

[Transient and steady-state electroretinograms and visual evoked potentials to pattern and uniform-field stimulation in humans].

作者信息

Nakayama M

机构信息

Department of Clinical Neurophysiology, Faculty of Medicine, Kyushu University, Fukuoka.

出版信息

Fukuoka Igaku Zasshi. 1994 Jul;85(7):225-34.

PMID:8070753
Abstract

I recorded simultaneously transient and steady-state electroretinograms (ERGs) and visual evoked potentials (VEPs) in response to pattern and uniform-field stimulation in 21 normal subjects, in order to study their physiological characteristics. ERGs and VEPs to pattern stimulation (P-ERGs and P-VEPs, respectively) showed different physiological features from those to uniform-field stimulation (U-ERGs and U-VEPs, respectively). With transient stimulation at a rate of 1Hz for both pattern and uniform-field stimulation, the b-wave latency of U-ERG tended to be shorter than that of P-ERG, while the P100 latency of P-VEP was significantly shorter than that of U-VEP. With steady-state stimulation at a rate of 4Hz for pattern stimulation and of 8Hz for uniform-field stimulation, the phase analysis revealed the first (1F) and the second (2F) harmonics as stable components for the U-ERG and U-VEP, while only 2F harmonic was a stable component for the P-ERG and P-VEP. The phase values of these components were different each other, and the maximal amplitude of the ERGs was shown by the 1F of U-ERG while that of the VEPs was shown by the 2F of P-VEP. These results suggest that the pattern and uniform-field stimulation allows us to separate pattern (contrast)-specific responses from luminance-specific responses both in ERGs and VEPs. Four patients with optic atrophy showed normal U-ERG while all of them showed abnormal P-ERG, U-VEP and P-VEP except one, who showed normal U-VEP. P-ERGs and P-VEPs may offer the information about the proximal inner retinal layer (or the ganglion cells) and the contrast channel of the visual cortex. U-ERGs and U-VEPs may be useful in evaluating the functions of the preganglionic cell activity in the retina and the luminance channel of the visual cortex. Therefore, simultaneous recording of ERGs and VEPs to pattern and uniform-field stimulation under both transient and steady-state conditions increase the diagnostic value of electrophysiologic testing in the visual pathways.

摘要

我对21名正常受试者在图形和均匀场刺激下同时记录了瞬态和稳态视网膜电图(ERG)以及视觉诱发电位(VEP),以研究它们的生理特征。图形刺激的ERG和VEP(分别为P-ERG和P-VEP)与均匀场刺激的ERG和VEP(分别为U-ERG和U-VEP)表现出不同的生理特征。在图形和均匀场刺激均以1Hz的频率进行瞬态刺激时,U-ERG的b波潜伏期往往比P-ERG的短,而P-VEP的P100潜伏期明显短于U-VEP的。在图形刺激以4Hz频率、均匀场刺激以8Hz频率进行稳态刺激时,相位分析显示U-ERG和U-VEP的基波(1F)和二次谐波(2F)为稳定成分,而P-ERG和P-VEP只有2F谐波是稳定成分。这些成分的相位值彼此不同,ERG的最大振幅由U-ERG的1F显示,而VEP的最大振幅由P-VEP的2F显示。这些结果表明,图形和均匀场刺激使我们能够在ERG和VEP中区分图形(对比度)特异性反应和亮度特异性反应。四名视神经萎缩患者的U-ERG正常,而除一名患者U-VEP正常外,其余患者的P-ERG、U-VEP和P-VEP均异常。P-ERG和P-VEP可能提供有关视网膜内层近端(或神经节细胞)和视皮层对比度通道的信息。U-ERG和U-VEP可能有助于评估视网膜节前细胞活动和视皮层亮度通道的功能。因此,在瞬态和稳态条件下同时记录图形和均匀场刺激下的ERG和VEP可提高视觉通路电生理测试的诊断价值。

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