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Combined treatment of phacoemulsification and single-port limited pars plana vitrectomy in acute angle-closure glaucoma 被引量:10
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作者 Ha Jeong Noh seong taeck kim 《International Journal of Ophthalmology(English edition)》 SCIE CAS 2019年第6期974-979,共6页
AIM: To evaluate the efficacy of combined treatment of phacoemulsification(PE) and micro-incisional single-port transconjunctival limited pars plana vitrectomy(PPV) in acute angle-closure glaucoma(AACG).METHODS: A ret... AIM: To evaluate the efficacy of combined treatment of phacoemulsification(PE) and micro-incisional single-port transconjunctival limited pars plana vitrectomy(PPV) in acute angle-closure glaucoma(AACG).METHODS: A retrospective study included 26 patients who underwent PE diagnosed with AACG. Among them, 16 patients(16 eyes) underwent PE alone, 10 patients(10 eyes) underwent combined limited vitrectomy and PE. Then we compared intraocular pressure(IOP), anterior chamber angle, anterior chamber depth, central corneal thickness and corneal endothelial cell count before and after surgery, and effective PE time during cataract surgery.RESULTS: Effective PE time was shorter in the combined surgery group than in the single surgery group(P=0.040). There was no statistically significant difference in IOP and best-corrected visual acuity between the two groups postoperatively. At 6 mo postoperatively, there was no difference in the anterior chamber angle, anterior chamber depth, and central corneal thickness between two groups, but corneal endothelial cell count was higher in the combined surgery group than in the single surgery group(P=0.046). No complication such as vitreoretinal disease, endophthalmitis, bullous keratopathy was noted.CONCLUSION: Combined micro-incisional single-port transconjunctival limited PPV and PE are more effective and safer than PE alone because of less operation time and fewer complications for management of AACG. 展开更多
关键词 LIMITED VITRECTOMY PHACOEMULSIFICATION acute ANGLE-CLOSURE glaucoma
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Correlation between macular ganglion cell-inner plexiform layer thickness and visual acuity after resolution of the macular edema secondary to central retinal vein occlusion 被引量:1
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作者 Hyun Ju kim Han Gyul Yoon seong taeck kim 《International Journal of Ophthalmology(English edition)》 SCIE CAS 2018年第2期256-261,共6页
AIM: To examine the thickness of the ganglion cell-inner plexiform layer(GCIPL) in eyes with resolved macular edema(ME) in non-ischemic central retinal vein occlusion(CRVO), applying spectral-domain optical coh... AIM: To examine the thickness of the ganglion cell-inner plexiform layer(GCIPL) in eyes with resolved macular edema(ME) in non-ischemic central retinal vein occlusion(CRVO), applying spectral-domain optical coherence tomography(SD-OCT), and its relationship with visual acuity.METHODS: The retrospective observational case-control study included 30 eyes of non-ischemic CRVO patients with resolved ME(ME eyes) after treatment, and 30 eyes of non-ischemic CRVO patients without ME(non-ME eyes). The macular GCIPL thickness, peripapillary retinal nerve fiber layer(p RNFL) thickness and central macular thickness(CMT) were measured on a SD-OCT scan. Linear regression analyses were performed to determine the correlation between the thickness of each and the visual acuity(VA).RESULTS: No significant difference in average GCIPL thickness, mean pR NFL thickness and CMT were observed between ME group and non-ME group(P=0.296, 0.183, 0.846). But, minimum GCIPL thickness was reduced in ME eyes compared with non-ME eyes(P=0.022). Final VA significantly correlated with the minimum GCIPL thickness in ME eyes(r=-0.482, P=0.007), whereas no correlation was found with average GCIPL thickness, average pR NFL thickness and mean CMT.CONCLUSION: Minimum GCIPL thickness is reduced in ME eyes compared with non-ME eyes, and correlated with the VA in non-ischemic CRVO. These results propose that inner retinal damage occurring in patients with ME secondary to non-ischemic CRVO may lead to permanent visual defect after treatment. 展开更多
关键词 central retinal vein occlusion ganglion cellinner plexiform layer optical coherence tomography
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