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高眼压症、青光眼、脱髓鞘性视神经炎和阿尔茨海默病患者视网膜形态学与功能损害之间的相关性。

Correlation between morphological and functional retinal impairment in patients affected by ocular hypertension, glaucoma, demyelinating optic neuritis and Alzheimer's disease.

作者信息

Parisi Vincenzo

机构信息

Clinica Oculistica Università di Roma Tor Vergata, Italy.

出版信息

Semin Ophthalmol. 2003 Jun;18(2):50-7. doi: 10.1076/soph.18.2.50.15855.

Abstract

In this article the correlations between the morphological evaluation of the nerve fiber layer (NFL) thickness (by OCT) and retinal functional assessment (by Pattern ERG recordings) performed in patients affected by ocular hypertension (OHT), glaucoma (OAG), demyelinating optic neuritis (MSON), and Alzheimer's disease (AD) are reported. In OHT eyes with ocular hypertension we observed that the inter-individual variation in NFL thickness is correlated with the variability of the PERG responses (the thinner the layer, the worse the visual function). In our OAG, MSON and AD eyes we observed a significant reduction in NFL thickness when compared with controls. In OHT, OAG, MSON and AD eyes abnormal PERG responses with delayed implicit times and reduced amplitudes were found. The impairment in the PERG parameters was significantly correlated to the reduction in NFL thickness. Our results suggest that in patients affected by ocular hypertension, glaucoma, demyelinating optic neuritis, and Alzheimer's Disease there is a reduction of NFL thickness evaluated "in vivo" by OCT, and this morphological involvement is correlated with electrophysiological responses assumed to be originating from the innermost retinal layers.

摘要

本文报道了在高眼压症(OHT)、青光眼(OAG)、脱髓鞘性视神经炎(MSON)和阿尔茨海默病(AD)患者中,通过光学相干断层扫描(OCT)对神经纤维层(NFL)厚度进行形态学评估与通过图形视网膜电图(Pattern ERG)记录进行视网膜功能评估之间的相关性。在患有高眼压症的眼睛中,我们观察到NFL厚度的个体间差异与图形视网膜电图(PERG)反应的变异性相关(层越薄,视觉功能越差)。在我们研究的青光眼、脱髓鞘性视神经炎和阿尔茨海默病患者的眼睛中,与对照组相比,我们观察到NFL厚度显著降低。在高眼压症、青光眼、脱髓鞘性视神经炎和阿尔茨海默病患者的眼睛中,发现了图形视网膜电图(PERG)反应异常,包括潜伏时延迟和波幅降低。图形视网膜电图(PERG)参数的损害与NFL厚度的降低显著相关。我们的结果表明,在高眼压症、青光眼、脱髓鞘性视神经炎和阿尔茨海默病患者中,通过OCT“活体”评估的NFL厚度降低,并且这种形态学改变与假定起源于视网膜最内层的电生理反应相关。

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