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AIMS This study aimed to report the 3-year follow-up results of the clinical course and structural changes of choroidal neovascularisation (CNV) by optical coherence tomography angiography (OCT-A) in eyes with a history of chronic central serous chorioretinopathy (CSC). selleck inhibitor METHODS This is a retrospective study of patients with chronic CSC complicated with CNV. Patients were recorded of best-corrected visual acuity (BCVA) and treatment modalities. OCT was used to evaluate the presence of subretinal fluid (SRF), type of CNV, changes in central retinal thickness (CRT) and subfoveal choroidal thickness (SFCT). Changes in the size, vessel density (VD) and morphology of CNV were evaluated by OCT-A. Comparison between baseline and final parameters was made. RESULTS A total of 30 eyes in 26 patients, most of whom had previous treatment for chronic CSC, were included with a mean follow-up period of 40.37±4.11 months. No changes in BCVA were noted (p=0.562). During the 3-year follow-up period with OCT-A, five eyes had SRF noted. The other 25 eyes remained SRF free throughout the course. Regarding the morphological changes, the size of CNV enlarged significantly (p less then 0.01); VD of CNV decreased significantly (p=0.01); and the number of CNV with visible core vessel significantly increased (p less then 0.01). A significant reduced SFCT was noted (p=0.02), while the CRT remained unchanged (p=0.855). CONCLUSION For most eyes infected with chronic CSC receiving previous treatment for the activity of chronic CSC, with CNV subsequently found on OCT-A, a midterm stable clinical course up to 3 years was noted, despite significant structural changes of CNV evaluated by OCT-A. © Author(s) (or their employer(s)) 2020. No commercial re-use. See rights and permissions. Published by BMJ.PURPOSE To investigate the long-term safety and efficacy of accelerated transepithelial corneal cross-linking (ATE-CXL) in children with progressive keratoconus. METHODS Fifty-three eyes of 41 paediatric patients (34 boys, 7 girls; mean age 14.81±1.96 years) undergoing ATE-CXL were enrolled in the study. Corrected distance visual acuity (CDVA) and manifest refraction were assessed preoperatively and 36 months postoperatively. Corneal keratometry, corneal thickness and posterior elevation were measured using Pentacam preoperatively and 1, 6, 12 and 36 months postoperatively. Pachymetry and epithelial thicknesses were measured using optical coherence tomography preoperatively and 6, 12, and 36 months postoperatively. RESULTS Thirty-six months postoperatively, CDVA improved from 0.32±0.28 to 0.26±0.25 in logarithm of the minimum angle resolution (p=0.025). Maximum keratometry was 58.73±9.70 D preoperatively and 59.20±10.24, 58.28±9.33, 57.88±9.99 and 58.98±10.79 D at 1, 6, 12 and 36 months postoperatively throughout the 36-month follow-up period (p>0.05). Similarly, corneal central thickness, which was 492.42±33.83 µm postoperatively, also remained stable during the 36-month follow-up (p>0.05). Both posterior central elevation and posterior highest elevation were stable at 12 months after ATE-CXL (p>0.05), but increased at 36 months postprocedure (p0.05). CONCLUSIONS ATE-CXL is a safe and effective treatment in paediatric progressive keratoconus patients, leading to stable keratometry and corneal thickness throughout the 36-month follow-up. © Author(s) (or their employer(s)) 2020. Re-use permitted under CC BY-NC. No commercial re-use. See rights and permissions. Published by BMJ.AIMS To report the clinical manifestations, ultrastructure and evaluate the efficacy of therapeutic lamellar keratectomy (TLK) and penetrating keratoplasty (PK) for microsporidial stromal keratitis (MSK). METHODS Fourteen MSK cases between 2009 and 2018 were recruited. Each patient's clinical presentation, light microscopy, histopathology, PCR and electron microscopy (EM) of corneal samples were reviewed. RESULTS The patients were 70.0±4.7 years old (average follow-up, 4.5 years). Time from symptoms to presentation was 10.6±13.0 weeks. The corneal manifestations were highly variable. Corneal scrapings revealed Gram stain positivity in 12 cases (85.7%) and modified Ziehl-Neelsen stain positivity in 9 (64.3%). Histopathology revealed spores in all specimens, while sequencing of small subunit rRNA-based PCR products identified Vittaforma corneae in 82% of patients. EM demonstrated various forms of microsporidial sporoplasm in corneal keratocytes. All patients were treated with topical antimicrobial agents or combined with oral antiparasitic medications for >3 weeks. As all patients were refractory to medical therapy, they ultimately underwent surgical intervention (TLK in 7, PK in 6 and 1 received TLK first, followed by PK). Postoperatively, the infection was resolved in 78.6% of the patients. Nevertheless, a high recurrence rate (21.4%) was noted during 3-year follow-up, with only two patients retained a final visual acuity ≥20/100. CONCLUSION MSK usually presents with a non-specific corneal infiltration refractory to antimicrobial therapy. The diagnosis relies on light microscopic examinations on corneal scrapings and histopathological analyses. Surgical intervention is warranted by limiting the infection; however, it was associated with an overall poor outcome. © Author(s) (or their employer(s)) 2020. No commercial re-use. See rights and permissions. Published by BMJ.PURPOSE To compare the foveal microvascular structure characteristics in children with a history of intravitreal injection of ranibizumab (IVR) versus laser photocoagulation (LP) for retinopathy of prematurity by optical coherence tomography angiography (OCTA). METHODS In this cross-sectional study, a total of 17 children (28 eyes) underwent IVR and 20 children (37 eyes) underwent LP were recruited. The age of doing OCTA examination of the two groups are 5.4±1.1 years and 6.3±1.8 years, respectively (p=0.07). Spectral-domain OCTA was performed for all the eyes with a scan size of 3×3 mm. The data of the superficial retinal layer were analysed. The foveal avascular zone (FAZ) and vessel density (including vessel length density (VLD) and perfusion density (PD)) were measured using the software of OCTA (Cirrus AngioPlex 5000, Carl Zeiss, Meditec, Dubin, California, USA). The central foveal thicknesses (CFT) were measured by cross-sectional OCT. RESULTS In the central fovea, the retinal VLD and PD of patients with IVR were 13.
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