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      Spectral domain optical coherence tomography in patients after successful management of postoperative endophthalmitis following cataract surgery by pars plana vitrectomy

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          Abstract

          Background

          Acute severe postoperative endophthalmitis may lead to severe vision loss. The aim of this study was the analysis of macular microstructure imaged by spectral domain optical coherence tomography in patients after pars plana vitrectomy due to postcataract endophthalmitis.

          Methods

          A cross sectional study was carried out in 17 patients who had cataract surgery in both eyes and underwent unilateral pars plana vitrectomy due to postcataract endophthalmitis. Postoperative best corrected visual acuity was determined in both eyes. Evaluation of macular thickness, macular volume, peripapillary retinal nerve fiber layer thickness and choroidal thickness using enhanced depth imaging technique was performed by spectral domain optical coherence tomography. The measurements obtained in the operated eye were compared to the fellow eye by Wilcoxon matched pair test. Correlation test was performed by Spearman rank order.

          Results

          A mean postoperative best corrected visual acuity of 63 ± 30 ETDRS letters versus 75 ± 21 letters was achieved in the study and fellow eyes, respectively, after a mean of 5.3 ± 4.5 months (p = 0.1). The mean macular thickness was 320.6 ± 28.8 μm SD in the study eyes compared to 318.4 ± 18.8 μm in the fellow eyes (p = 0.767). No differences were noted in macular volume (p = 0.97) and in peripapillary retinal nerve fiber layer thickness (p = 0.31). Choroidal thickness was significantly lower in the study eyes compared to the fellow eyes (p = 0.018). Epiretinal membrane was found in 7 eyes after endophthalmitis, while in the fellow eyes only in 3 cases (p = 0.13, Fisher’s exact test).

          Conclusion

          Choroidal thickness decreased significantly after endophthalmitis, but there was no functional correlation with the changes in choroidal microstructure. The development of epiretinal membranes may be associated with either vitrectomy or endophthalmitis in the history. Absence of other significant structural and morphological findings shows that successful treatment may guarantee good clinical results even in long term after this severe postoperative complication.

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          Most cited references30

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          A pilot study of enhanced depth imaging optical coherence tomography of the choroid in normal eyes.

          To measure macular choroidal thickness in normal eyes at different points using enhanced depth imaging (EDI) optical coherence tomography (OCT) and to evaluate the association of choroidal thickness and age. Retrospective, observational case series. EDI OCT images were obtained in patients without significant retinal or choroidal pathologic features. The images were obtained by positioning a spectral-domain OCT device close enough to the eye to acquire an inverted image. Seven sections were obtained within a 5 x 30-degree area centered at the fovea, with 100 scans averaged for each section. The choroid was measured from the outer border of the retinal pigment epithelium to the inner scleral border at 500-microm intervals of a horizontal section from 3 mm temporal to the fovea to 3 mm nasal to the fovea. Statistical analysis was performed to evaluate variations of choroidal thickness at each location and to correlate choroidal thickness and patient age. The mean age of the 30 patients (54 eyes) was 50.4 years (range, 19 to 85 years), and 14 patients (46.7%) were female. The choroid was thickest underneath the fovea (mean, 287 microm; standard deviation, +/- 76 microm). Choroidal thickness decreased rapidly in the nasal direction and averaged 145 microm (+/- 57 microm) at 3 mm nasal to the fovea. Increasing age was correlated significantly with decreasing choroidal thickness at all points measured. Regression analysis suggested that the subfoveal choroidal thickness decreased by 15.6 microm for each decade of life. Choroidal thickness seems to vary topographically within the posterior pole. The thickness of the choroid showed a negative correlation with age. The decrease in the thickness of the choroid may play a role in the pathophysiologic features of various age-related ocular conditions.
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            Subfoveal choroidal thickness after treatment of central serous chorioretinopathy.

            To evaluate the subfoveal choroidal thickness after treatment of central serous chorioretinopathy (CSC) visualized by enhanced depth imaging spectral-domain optical coherence tomography (EDI OCT) and indocyanine green angiography (ICGA). Retrospective, comparative series. Twenty patients (20 eyes). The subfoveal choroidal thickness and height of the serous retinal detachment before and after treatment was measured using EDI OCT. Areas of choroidal vascular hyperpermeability were visualized with ICGA. Eyes with classic CSC were treated with laser photocoagulation (LP), whereas eyes with chronic CSC, which are not amenable to LP, were treated with half-dose verteporfin photodynamic therapy (PDT). Change in choroidal thickness and height of the serous retinal detachment after treatment. There were 12 eyes in the LP group and 8 eyes in the PDT group. The serous subretinal fluid resolved in both groups after treatment. In the LP group, the mean choroidal thickness was 345+/-127 microm at baseline and 340+/-124 microm at 4 weeks, a difference that was not significant (P = 0.2). The mean choroidal thickness in the PDT group increased significantly from 389+/-106 microm at baseline to 462+/-124 microm (P = 0.008) by 2 days after treatment, and then reduced rapidly to 360+/-100 microm (P = 0.001) at 1 week and 330+/-103 microm (P<0.001) after 4 weeks as compared with baseline. Indocyanine green angiography showed decreased hyperpermeability in the PDT group after treatment. The subretinal fluid resolved in both disease groups; however, the choroidal thickness and hyperpermeability seen during ICGA was reduced after PDT. These findings suggest that PDT reduces the choroidal vascular hyperpermeability seen in CSC and may work by a different mechanism than LP. Copyright © 2010 American Academy of Ophthalmology. Published by Elsevier Inc. All rights reserved.
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              Central serous chorioretinopathy: an update on pathogenesis and treatment.

              Central serous chorioretinopathy (CSC) is a chorioretinal disease, incompletely understood with systemic associations, a multifactorial aetiology, and a complex pathogenesis. Increased permeability from the choriocapillaris leads to focal or diffuse dysfunction of the retinal pigment epithelium causing a detachment of the neurosensory retina. CSC has been described in patients with endogenously high levels of corticosteroids as well as in patients with hypercortisolism due to the treatment of ocular or systemic diseases. It is therefore the only 'inflammatory' choroiditis, not proven to be associated with infection that is precipitated or worsened by glucocorticoids. Foveal attenuation, chronic macular oedema, and damage of the foveal photoreceptor layer have been reported as causes of visual loss in CSC. Photoreceptor atrophy in the fovea, despite successful retinal reattachment, typically occurs after a duration of symptoms of approximately 4 months. Treatment should therefore be considered after 3 months if there is angiographic evidence of ongoing foveal leakage in recurrent chronic CSC or in a single CSC episode accompanied by signs of chronic CSC alterations. Based on results of trials conducted so far, it appears that photodynamic therapy with verteporfin is effective and safer than argon laser treatment and should be considered as the treatment of choice, whereas micropulse diode laser photocoagulation seems to be an effective alternative. Glucocorticoid inhibitors are an interesting alternative treatment. Clinical trials are ongoing to test their efficacy. In addition, it is important, where possible, to discontinue any corticosteroid treatment. The possible association of CSC with stress should also be discussed with patients.
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                Author and article information

                Contributors
                Journal
                BMC Ophthalmol
                BMC Ophthalmol
                BMC Ophthalmology
                BioMed Central
                1471-2415
                2014
                2 June 2014
                : 14
                : 76
                Affiliations
                [1 ]Department of Ophthalmology, Semmelweis University, Budapest, Hungary
                Article
                1471-2415-14-76
                10.1186/1471-2415-14-76
                4077685
                24885759
                f09201c6-1482-4d7b-a45f-d8968a4b9686
                Copyright © 2014 Maneschg et al.; licensee BioMed Central Ltd.

                This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( http://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited. The Creative Commons Public Domain Dedication waiver ( http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.

                History
                : 11 March 2014
                : 28 May 2014
                Categories
                Research Article

                Ophthalmology & Optometry
                spectral domain optical coherence tomography,postoperative endophthalmitis,enhanced depth imaging,choroidal thickness,vitrectomy

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