Park Young Gun, Park Chan Kee, Jung Kyoung In
Department of Ophthalmology, Seoul St. Mary's Hospital, College of Medicine, The Catholic University of Korea, Seoul 06591, Republic of Korea.
J Clin Med. 2025 Jan 21;14(3):682. doi: 10.3390/jcm14030682.
: The objective assessment of visual function is crucial in glaucoma management, highlighting the importance of electroretinography (ERG). This study investigates the diagnostic performance of photopic negative response (PhNR) amplitude and the normalized PhNR/b-wave ratio in diagnosing glaucoma, focusing on the impact of myopia. : Ninety-one glaucoma patients and 19 glaucoma suspects were included, defining myopia as axial length (AL) > 24 mm or > 25 mm. Full-field photopic ERG used a red stimulus on a blue background. : Myopic glaucoma patients showed a higher PhNR/b-wave ratio than non-myopic patients ( = 0.023). AL negatively correlated with b-wave amplitude (r = -0.239, = 0.012). PhNR amplitude demonstrated an area under the receiver operating characteristic curve (AUC) of 0.661 ( = 0.028) overall and was less effective in the myopic subgroup (AUC = 0.574, = 0.082). The diagnostic performance of the PhNR/b-wave ratio did not achieve statistical significance in either the total group (AUC = 0.616, = 0.114) or the myopic subgroup (AUC = 0.574, = 0.332). : Standardization using the PhNR/b-wave ratio did not enhance diagnostic accuracy over PhNR amplitude, particularly in myopic patients, underscoring the need for careful interpretation in myopia and further research to optimize electrophysiological diagnostics.
视觉功能的客观评估在青光眼治疗中至关重要,这凸显了视网膜电图(ERG)的重要性。本研究调查了明视负反应(PhNR)振幅和标准化PhNR/b波比值在青光眼诊断中的诊断性能,重点关注近视的影响。:纳入了91例青光眼患者和19例青光眼疑似患者,将近视定义为眼轴长度(AL)>24mm或>25mm。全视野明视ERG在蓝色背景上使用红色刺激。:近视性青光眼患者的PhNR/b波比值高于非近视患者( = 0.023)。眼轴长度与b波振幅呈负相关(r = -0.239, = 0.012)。总体而言,PhNR振幅在受试者工作特征曲线(AUC)下的面积为0.661( = 0.028),在近视亚组中效果较差(AUC = 0.574, = 0.082)。PhNR/b波比值的诊断性能在总组(AUC = 0.616, = 0.114)或近视亚组(AUC = 0.574, = 0.332)中均未达到统计学意义。:使用PhNR/b波比值进行标准化并没有比PhNR振幅提高诊断准确性,特别是在近视患者中,这突出了在近视情况下进行仔细解读的必要性以及进一步研究以优化电生理诊断的需求。