Center for Ophthalmology, University Eye Hospital, University of Tübingen, 72076, Tübingen, Germany.
Center for Rare Eye Diseases, University of Tübingen, 72076, Tübingen, Germany.
Doc Ophthalmol. 2024 Aug;149(1):11-21. doi: 10.1007/s10633-024-09981-y. Epub 2024 Jun 14.
The aim of this exploratory study is to investigate the role of S-cones in oscillatory potentials (OPs) generation by individuals with blue-cone monochromacy (BCM), retaining S-cones, and achromatopsia (ACHM), lacking cone functions.
This retrospective study analyzed data from 39 ACHM patients, 20 BCM patients, and 26 controls. Central foveal thickness was obtained using spectral-domain optical coherence tomography, while amplitude and implicit time (IT) of a- and b-waves were extracted from the ISCEV Standard dark-adapted 3 cd.s.m full-field ERG (ffERG). Time-frequency analysis of the same measurement enabled the extraction of OPs, providing insights into the dynamic characteristics of the recorded signal.
Both ACHM and BCM groups showed a significant reduction (p < .00001) of a- and b-wave amplitudes and ITs as well as the power of the OPs compared to the control groups. The comparison between ACHM and BCM didn't show any statistically significant differences in the electrophysiological parameters. The analysis of covariance revealed significantly reduced central foveal thickness in the BCM group compared to ACHM and controls (p < .00001), and in ACHM compared to controls (p < .00001), after age correction and Tukey post-hoc analysis.
S-cones do not significantly influence OPs, and the decline in OPs' power is not solely due to a reduced a-wave. This suggests a complex non-linear network influenced by photoreceptor inputs. Morphological changes don't correlate directly with functional alterations, prompting further exploration of OPs' function and physiological role.
本探索性研究旨在调查保留 S- cones 的蓝锥单色症(BCM)和缺乏锥体细胞功能的全色盲(ACHM)个体中 S- cones 在振荡电位(OPs)产生中的作用。
本回顾性研究分析了 39 名 ACHM 患者、20 名 BCM 患者和 26 名对照者的数据。使用谱域光相干断层扫描(SD-OCT)获得中央视网膜黄斑厚度,从 ISCEV 标准暗适应 3 cd.s.m 全视野视网膜电图(ffERG)中提取 a- 和 b-波的振幅和潜伏期(IT)。对同一测量的时频分析可提取 OPs,从而深入了解记录信号的动态特征。
ACHM 和 BCM 组的 a-和 b-波振幅和 IT 以及 OPs 的功率均显著低于对照组(p < .00001)。ACHM 和 BCM 组之间的比较在电生理参数方面未显示任何统计学上的显著差异。协方差分析显示,BCM 组的中央视网膜黄斑厚度明显低于 ACHM 组和对照组(p < .00001),ACHM 组也明显低于对照组(p < .00001),在年龄校正和 Tukey 事后分析后。
S- cones 对 OPs 的影响不大,而 OPs 功率的下降不仅仅是由于 a-波的减少。这表明存在一个受光感受器输入影响的复杂非线性网络。形态学变化与功能改变没有直接相关,这促使我们进一步探索 OPs 的功能和生理作用。