Barbano Lucilla, Ziccardi Lucia, Antonelli Giulio, Nicoletti Carolina Gabri, Landi Doriana, Mataluni Giorgia, Falsini Benedetto, Marfia Girolama Alessandra, Centonze Diego, Parisi Vincenzo
IRCCS-Fondazione Bietti, Via Livenza 1, 00198 Rome, Italy.
Multiple Sclerosis Clinical and Research Unit, Department of Systems Medicine, Tor Vergata University, Via Montpellier 1, 00133 Rome, Italy.
Diagnostics (Basel). 2022 May 6;12(5):1156. doi: 10.3390/diagnostics12051156.
The measure of the full-field photopic negative response (ff-PhNR) of light-adapted full-field electroretinogram (ff-ERG) allows to evaluate the function of the innermost retinal layers (IRL) containing primarily retinal ganglion cells (RGCs) and other non-neuronal elements of the entire retina. The aim of this study was to acquire functional information of localized IRL by measuring the PhNR in response to multifocal stimuli (mfPhNR). In this case-control observational and retrospective study, we assessed mfPhNR responses from 25 healthy controls and from 20 patients with multiple sclerosis with previous history of optic neuritis (MS-ON), with full recovery of visual acuity, IRL morphological impairment, and absence of morpho-functional involvement of outer retinal layers (ORL). MfPhNR response amplitude densities (RADs) were measured from concentric rings (R) with increasing foveal eccentricity: 0−5° (R1), 5−10° (R2), 10−15° (R3), 15−20° (R4), and 20−25° (R5) from retinal sectors (superior-temporal (ST), superior-nasal (SN), inferior-nasal (IN), and inferior-temporal (IT)); between 5° and 20° and from retinal sectors (superior (S), temporal (T), inferior (I), and nasal (N)); and within 5° to 10° and within 10° and 20° from the fovea. The mfPhNR RAD values observed in all rings or sectors in MS-ON eyes were significantly reduced (p < 0.01) with respect to control ones. Our results suggest that mfPhNR recordings may detect localized IRL dysfunction in the pathologic condition of selective RGCs neurodegeneration.
对光适应全视野视网膜电图(ff - ERG)的全视野明视负反应(ff - PhNR)进行测量,有助于评估主要包含视网膜神经节细胞(RGCs)和整个视网膜其他非神经元成分的最内层视网膜(IRL)的功能。本研究的目的是通过测量对多焦点刺激的PhNR(mfPhNR)来获取局部IRL的功能信息。在这项病例对照观察性回顾研究中,我们评估了25名健康对照者以及20名既往有视神经炎病史(MS - ON)且视力完全恢复、IRL形态学无损伤且外层视网膜(ORL)无形态功能受累的多发性硬化症患者的mfPhNR反应。从视网膜象限(颞上(ST)、鼻上(SN)、鼻下(IN)和颞下(IT))中,以中央凹偏心度递增的同心环(R)测量mfPhNR反应振幅密度(RADs):0 - 5°(R1)、5 - 10°(R2)、10 - 15°(R3)、15 - 20°(R4)和20 - 25°(R5);在5°至20°之间以及从视网膜象限(上(S)、颞(T)、下(I)和鼻(N))测量;以及在中央凹5°至10°范围内以及10°至20°范围内测量。与对照组相比,MS - ON眼所有环或象限中观察到的mfPhNR RAD值均显著降低(p < 0.01)。我们的结果表明,mfPhNR记录可能检测到选择性RGCs神经变性病理状态下的局部IRL功能障碍。