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首页> 外文期刊>Investigative ophthalmology & visual science >Multifocal topographic visual evoked potential: improving objective detection of local visual field defects.
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Multifocal topographic visual evoked potential: improving objective detection of local visual field defects.

机译:多焦点地形视觉诱发电位:改善对局部视野缺损的客观检测。

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PURPOSE: To investigate the relationships between the pattern stimulation of different parts of the visual field (up to 25 degrees of eccentricity), the electrode position, and the cortical response to improve objective detection of local visual field defects. METHODS: The human visual evoked potential (VEP) was assessed using multifocal pseudorandomly alternated pattern stimuli that were cortically scaled in size. Monopolar and bipolar electrode positions were used. The visual field was investigated up to 26 degrees of eccentricity. Twelve normal subjects and seven subjects with visual field defects of different nature were studied. RESULTS: Although the monopolar response is heavily biased toward the lower hemifield, bipolar leads overlying the active occipital cortex (straddling the inion) demonstrate good signals from all areas of the visual field tested. The amplitude is almost equal for the averaged upper and lower hemifields, but the polarity is opposite, causing partial cancellation of the full-field VEP. The degree of cancellation depends mainly on latency differences between the vertical hemifields. The bipolar VEP corresponded well with Humphrey visual field defects, and it showed a loss of signal in the scotoma area. CONCLUSIONS: The multifocal VEP demonstrates good correspondence with the topography of the visual field. Recording with occipital bipolar electrode placement is superior to standard monopolar recording. To avoid a full-field cancellation effect, a separate evaluation of upper and lower hemifields should be used for the best assessment of retinocortical pathways. This technique represents a significant step toward the possible application of the multifocal VEP to objective detection of local defects in the visual field.
机译:目的:研究视野不同部位(最多25度的偏心度)的模式刺激,电极位置和皮质反应之间的关系,以改善对局部视野缺损的客观检测。方法:使用皮层缩放的多焦点伪随机交替模式刺激评估人的视觉诱发电位(VEP)。使用单极和双极电极位置。研究了高达26度的偏心度的视野。研究了十二个正常受试者和七个具有不同性质的视野缺损的受试者。结果:尽管单极反应严重偏向下半场,但覆盖在活动枕叶皮质(跨在洋葱上)的双极导线显示了来自所测试视野所有区域的良好信号。对于平均的上半场和下半场,幅度几乎相等,但是极性相反,从而导致全场VEP的部分抵消。抵消程度主要取决于垂直半场之间的等待时间差异。双极型VEP与汉弗莱视野缺损很好地吻合,并且在暗区显示信号丢失。结论:多焦点VEP显示与视野的地形良好的对应关系。枕骨双极电极放置的记录优于标准单极记录。为避免全视野消除效应,应使用上下半视野的单独评估方法来最佳评估视网膜皮层通路。该技术代表了将多焦点VEP应用于客观检测视野中局部缺陷的重要一步。

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