Tobimatsu S, Kato M
Department of Clinical Neurophysiology, Neurological Institute, Faculty of Medicine, Kyushu University, Fukuoka, Japan.
Neurology. 1998 Mar;50(3):715-8. doi: 10.1212/wnl.50.3.715.
Visual information is processed via multiple, parallel channels. The present study examined the clinical feasibility of multimodality visual evoked potentials (VEPs) in optic neuritis. We recorded transient VEPs to 30' checkerboard patterns, chromatic and achromatic sinusoidal gratings and apparent motion, and steady-state VEPs to achromatic gratings in 15 normal controls and 14 patients. VEPs to 30' checks were abnormal in 10 eyes (7 patients); however, considering all five modalities, abnormal responses were seen in 20 eyes (12 patients). Abnormality rates were not equal among the visual stimuli, which thus suggested possible dysfunction of individual subdivisions in the visual pathways. We conclude that use of multimodality VEPs may increase both understanding of the pathophysiology of the visual pathways and diagnostic yield.
视觉信息通过多个并行通道进行处理。本研究检测了多模态视觉诱发电位(VEP)在视神经炎中的临床可行性。我们记录了15名正常对照者和14名患者对30'棋盘格图案、彩色和非彩色正弦光栅及表观运动的瞬态VEP,以及对非彩色光栅的稳态VEP。10只眼(7例患者)对30'方格的VEP异常;然而,综合考虑所有五种模式,20只眼(12例患者)出现异常反应。视觉刺激之间的异常率并不相同,这表明视觉通路中各个亚区可能存在功能障碍。我们得出结论,使用多模态VEP可能会增进对视神经通路病理生理学的理解并提高诊断率。