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Suprachoroidal Hemorrhage in Pars Plana Vitrectomy

扁平部 医学 玻璃体切除术 眼科 视力
作者
Aman Chandra,Wen Xing,Mustafa R. Kadhim,Tom H. Williamson
出处
期刊:Ophthalmology [Elsevier BV]
卷期号:121 (1): 311-317 被引量:56
标识
DOI:10.1016/j.ophtha.2013.06.021
摘要

PurposeTo investigate the rate and risk factors of developing suprachoroidal hemorrhage (SCH) after pars plana vitrectomy (PPV) and the outcomes as a result.DesignRetrospective, comparative consecutive series.ParticipantsA total of 5459 patients who underwent pars plana vitrectomies over 10 years in 3 surgical centers.MethodsAll patient demographic, medical, and ophthalmic data and operative information from 3 vitreoretinal centers were entered prospectively into an electronic medical record. Univariate analysis was undertaken, comparing risk factors between cases (SCH) and controls. Multivariable logistic regression was performed to test for independence between the risk factors (P < 0.2 in univariate analysis) and SCH.Main Outcome MeasuresRisk factors for developing SCH. Visual outcome and development of complications.ResultsA total of 5459 PPVs were undertaken for a wide range of indications. Fifty-six cases of PPV were complicated by SCH (1.03%). Multivariable logistic regression showed that significant risk factors for developing this included advancing age, (mean age, 69 years in cases and 60 years in controls; odds ratio [OR], 1.04; P = 0.001), male sex (76.8% of cases and 58.7% of controls; OR, 2.38; P = 0.008), presence of rhegmatogenous retinal detachment (RRD) (80.3% of cases and 52.5% of controls; OR, 5.92; P < 0.0001), presence of a dropped lens fragment (10.7% of cases and 4.5% of controls; OR, 6.94; P = 0.002), and the use of antiplatelet or anticoagulant drugs (33.9% of cases and 17.7% of controls; OR, 2.29; P = 0.007). Suprachoroidal hemorrhage was more common with increasing quadrants of RRD. The significant operative risk factor was application of an explant (25% of cases and 4.07% of controls; OR, 5.63; P < 0.0001). Phthisis (7.1% of cases and 0.9% of controls; P = 0.002, Fisher exact test) and glaucoma (14.3% of cases and 7.2% of controls; P = 0.044, chi-square test) were more common in cases than in controls.ConclusionsThe risk factors for developing intraoperative SCH during PPV are male sex, advancing age, RRD, a scleral explant, a dropped lens fragment, and the use of aspirin or warfarin. Patients with this complication have a greater risk of developing ocular hypertension requiring treatment and phthisis. To investigate the rate and risk factors of developing suprachoroidal hemorrhage (SCH) after pars plana vitrectomy (PPV) and the outcomes as a result. Retrospective, comparative consecutive series. A total of 5459 patients who underwent pars plana vitrectomies over 10 years in 3 surgical centers. All patient demographic, medical, and ophthalmic data and operative information from 3 vitreoretinal centers were entered prospectively into an electronic medical record. Univariate analysis was undertaken, comparing risk factors between cases (SCH) and controls. Multivariable logistic regression was performed to test for independence between the risk factors (P < 0.2 in univariate analysis) and SCH. Risk factors for developing SCH. Visual outcome and development of complications. A total of 5459 PPVs were undertaken for a wide range of indications. Fifty-six cases of PPV were complicated by SCH (1.03%). Multivariable logistic regression showed that significant risk factors for developing this included advancing age, (mean age, 69 years in cases and 60 years in controls; odds ratio [OR], 1.04; P = 0.001), male sex (76.8% of cases and 58.7% of controls; OR, 2.38; P = 0.008), presence of rhegmatogenous retinal detachment (RRD) (80.3% of cases and 52.5% of controls; OR, 5.92; P < 0.0001), presence of a dropped lens fragment (10.7% of cases and 4.5% of controls; OR, 6.94; P = 0.002), and the use of antiplatelet or anticoagulant drugs (33.9% of cases and 17.7% of controls; OR, 2.29; P = 0.007). Suprachoroidal hemorrhage was more common with increasing quadrants of RRD. The significant operative risk factor was application of an explant (25% of cases and 4.07% of controls; OR, 5.63; P < 0.0001). Phthisis (7.1% of cases and 0.9% of controls; P = 0.002, Fisher exact test) and glaucoma (14.3% of cases and 7.2% of controls; P = 0.044, chi-square test) were more common in cases than in controls. The risk factors for developing intraoperative SCH during PPV are male sex, advancing age, RRD, a scleral explant, a dropped lens fragment, and the use of aspirin or warfarin. Patients with this complication have a greater risk of developing ocular hypertension requiring treatment and phthisis.
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