Rufiange Marianne, Dassa Justine, Dembinska Olga, Koenekoop Robert K, Little John M, Polomeno Robert C, Dumont Marie, Chemtob Sylvain, Lachapelle Pierre
Department of Ophthalmology (D-164), McGill University, Montreal Children's Hospital Research Institute, 2300 Tupper Street, Que., H3H 1P3, Montreal, Canada.
Vision Res. 2003 Jun;43(12):1405-12. doi: 10.1016/s0042-6989(03)00118-4.
With progressively brighter stimuli, the amplitude of the photopic b-wave first increases, briefly saturates and then decreases gradually to reach a plateau, where the amplitude of the b-wave equals that of the a-wave; a phenomenon previously presented as the photopic hill. The unique presentation of this luminance-response function seriously complicates its analysis with curve fitting equations such as that of Naka-Rushton used for scotopic electroretinogram. We report a method of analysis of the photopic hill based on easily identifiable and reproducible features of the ascending and descending limbs of this function. The clinical usefulness of these parameters is illustrated with selected cases of retinal disorders.
随着刺激强度逐渐增强,明视b波的振幅首先增大,短暂饱和后逐渐减小至达到一个平台期,此时b波的振幅与a波相等;这一现象此前被称为明视峰。这种亮度-反应函数的独特表现使得用诸如用于暗视视网膜电图的中谷-拉什顿方程等曲线拟合方程对其进行分析变得极为复杂。我们报告了一种基于该函数上升和下降支易于识别和重现的特征来分析明视峰的方法。通过选定的视网膜疾病病例说明了这些参数的临床实用性。