Literature DB >> 23644558

Retinal inner nuclear layer microcystic changes in optic nerve atrophy: a novel spectral-domain OCT finding.

Benjamin Wolff1, Chrysanthi Basdekidou, Vivien Vasseur, Martine Mauget-Faÿsse, José-Alain Sahel, Catherine Vignal.   

Abstract

PURPOSE: Optic atrophy constitutes the final stage in the evolution of optic neuropathy. The aim of this study was to describe the presence of macular microcystic changes or pseudocysts in patients with advanced optic atrophy.
METHODS: The medical records of 24 patients who had retinal pseudocysts in association with optic atrophy have been analyzed. All patients underwent a complete neuro-ophthalmologic assessment; peripapillary retinal nerve fiber layer thickness and macular screening with spectral-domain optical coherence tomography and optical coherence tomography "en face" imaging analysis were also performed.
RESULTS: A total of 36 eyes were included in the study. Patients' mean age was 37 years. The major cause of optic atrophy was glaucoma (12 cases). The retinal pseudocysts were observed as hyporeflective lesions in the internal nuclear layer. Infrared images revealed a hyporeflective circular or semilunar shape corresponding to the location of the pseudocysts in all cases. In eyes with pseudocysts, mean thickness of the peripapillary retinal nerve fiber layer was statistically significantly less than that of fellow eyes (P = 0.0003), whereas macular thickness was statistically significantly higher compared with fellow eyes (P < 0.005).
CONCLUSION: The presence of pseudocystic lesions always associated with severe optic nerve fiber loss is reported. The reason why pseudocystic lesions develop within the retina is not well understood. They might constitute the translation of degeneration of Muller cells in severe optic nerve fiber loss. Recognizing these pseudocysts is crucial because they may be confused with cystoid macular edema. Their prognostic value and role in the therapeutic process need to be further evaluated with prospective studies and molecular experiments in vivo.

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Year:  2013        PMID: 23644558     DOI: 10.1097/IAE.0b013e31828e68d0

Source DB:  PubMed          Journal:  Retina        ISSN: 0275-004X            Impact factor:   4.256


  22 in total

1.  The expanding spectrum of aetiologies causing retinal microcystic macular change.

Authors:  Pavan Bhargava; Peter A Calabresi
Journal:  Brain       Date:  2013-10-16       Impact factor: 13.501

2.  Evaluation of inner retinal layers in eyes with temporal hemianopic visual loss from chiasmal compression using optical coherence tomography.

Authors:  Mário L R Monteiro; Kenzo Hokazono; Danilo B Fernandes; Luciana V F Costa-Cunha; Rafael M Sousa; Ali S Raza; Diane L Wang; Donald C Hood
Journal:  Invest Ophthalmol Vis Sci       Date:  2014-04-24       Impact factor: 4.799

3.  Brain and retinal atrophy in African-Americans versus Caucasian-Americans with multiple sclerosis: a longitudinal study.

Authors:  Natalia Gonzalez Caldito; Shiv Saidha; Elias S Sotirchos; Blake E Dewey; Norah J Cowley; Jeffrey Glaister; Kathryn C Fitzgerald; Omar Al-Louzi; James Nguyen; Alissa Rothman; Esther Ogbuokiri; Nicholas Fioravante; Sydney Feldman; Ohemaa Kwakyi; Hunter Risher; Dorlan Kimbrough; Teresa C Frohman; Elliot Frohman; Laura Balcer; Ciprian Crainiceanu; Peter C M Van Zijl; Ellen M Mowry; Daniel S Reich; Jiwon Oh; Dzung L Pham; Jerry Prince; Peter A Calabresi
Journal:  Brain       Date:  2018-11-01       Impact factor: 13.501

4.  Poorer neurodevelopmental outcomes associated with cystoid macular edema identified in preterm infants in the intensive care nursery.

Authors:  Adam L Rothman; Du Tran-Viet; Kathryn E Gustafson; Ricki F Goldstein; Maureen G Maguire; Vincent Tai; Neeru Sarin; Amy Y Tong; Jiayan Huang; Laura Kupper; C Michael Cotten; Sharon F Freedman; Cynthia A Toth
Journal:  Ophthalmology       Date:  2014-11-04       Impact factor: 12.079

5.  Longitudinal analysis of the structural pattern of pseudophakic cystoid macular edema using multimodal imaging.

Authors:  Eric J Sigler; John C Randolph; Daniel F Kiernan
Journal:  Graefes Arch Clin Exp Ophthalmol       Date:  2015-04-12       Impact factor: 3.117

6.  Subclinical Retinal versus Brain Findings in Infants with Hypoxic Ischemic Encephalopathy.

Authors:  Shwetha Mangalesh; Du Tran-Viet; Carolyn Pizoli; Vincent Tai; Mays Antoine El-Dairi; Xi Chen; Christian Viehland; Laura Edwards; Joanne Finkle; Sharon F Freedman; Cynthia Ann Toth
Journal:  Graefes Arch Clin Exp Ophthalmol       Date:  2020-05-29       Impact factor: 3.117

7.  Optical coherence tomography reflects brain atrophy in multiple sclerosis: A four-year study.

Authors:  Shiv Saidha; Omar Al-Louzi; John N Ratchford; Pavan Bhargava; Jiwon Oh; Scott D Newsome; Jerry L Prince; Dzung Pham; Snehashis Roy; Peter van Zijl; Laura J Balcer; Elliot M Frohman; Daniel S Reich; Ciprian Crainiceanu; Peter A Calabresi
Journal:  Ann Neurol       Date:  2015-10-01       Impact factor: 10.422

Review 8.  Macular imaging with optical coherence tomography in glaucoma.

Authors:  Vahid Mohammadzadeh; Nima Fatehi; Adeleh Yarmohammadi; Ji Woong Lee; Farideh Sharifipour; Ramin Daneshvar; Joseph Caprioli; Kouros Nouri-Mahdavi
Journal:  Surv Ophthalmol       Date:  2020-03-19       Impact factor: 6.048

9.  Clinical evaluation of microcystic macular edema in patients with glaucoma.

Authors:  N Murata; T Togano; D Miyamoto; S Ochiai; T Fukuchi
Journal:  Eye (Lond)       Date:  2016-08-12       Impact factor: 3.775

Review 10.  Optical coherence tomography (OCT) in neuro-ophthalmology.

Authors:  Neda Minakaran; Emanuel R de Carvalho; Axel Petzold; Sui H Wong
Journal:  Eye (Lond)       Date:  2020-11-25       Impact factor: 3.775

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