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近视与晶状体混浊各亚型之间的关联:索尔兹伯里眼评估(SEE)项目

The association between myopia and various subtypes of lens opacity: SEE (Salisbury Eye Evaluation) project.

作者信息

Chang Margaret A, Congdon Nathan G, Bykhovskaya Irina, Munoz Beatriz, West Sheila K

机构信息

Wilmer Eye Institute and the Dana Center for Preventive Ophthalmology, Johns Hopkins University Schools of Medicine and Public Health, Baltimore, Maryland 21287, USA.

出版信息

Ophthalmology. 2005 Aug;112(8):1395-401. doi: 10.1016/j.ophtha.2005.02.017.

Abstract

PURPOSE

To establish the relationship between myopia and lens opacity.

DESIGN

Population-based cross-sectional study.

PARTICIPANTS

Two thousand five hundred twenty participants from the Salisbury Eye Evaluation aged 65 to 84 years.

METHODS

Participants filled out questionnaires regarding medical history, social habits, and a detailed history of distance spectacle wear. They underwent a full ocular examination. Lens photographs were taken for assessment of lens opacity using the Wilmer grading system. Multivariate logistic regression models using generalized estimating equations were used to analyze the relationship between lens opacity type and degree of myopia, while accounting for potential confounders.

MAIN OUTCOME MEASURES

Presence of posterior subcapsular opacity, cortical opacity, or nuclear opacity.

RESULTS

Significant associations were found between myopia and both nuclear and posterior subcapsular opacities. For nuclear opacity, the odds ratios (ORs) were 2.25 for myopia between -0.50 diopters (D) and -1.99 D (P<0.001), 3.65 for myopia between -2.00 D and -3.99 D (P<0.001), 4.54 for myopia between -4.00 D and -5.99 D (P<0.001), and 3.61 for myopia -6.00 D or more (P = 0.002). For posterior subcapsular cataracts, ORs were 1.59 for myopia between -0.50 D and -1.99 D (P = 0.11), 3.22 for myopia between -2.00 D and -3.99 D (P = 0.002), 5.36 for myopia between -4.00 D and -5.99 D (P<0.001), and 12.34 for myopia -6.00 D or more (P<0.001). No association was found between myopia and cortical opacity. The association between posterior subcapsular opacity and myopia was equally strong for those wearing glasses by age 21 years and for those without glasses; for nuclear opacity, significantly higher ORs were found for myopes who started wearing glasses after age 21.

CONCLUSIONS

These results confirm the previously reported association between myopia, posterior subcapsular opacity, and nuclear opacity. Furthermore, the strong association between early spectacle wear and posterior subcapsular opacity among myopes, absent for nuclear opacity, suggests that myopia may precede opacity in the case of posterior subcapsular opacity, but not nuclear opacity. Measures of association between posterior subcapsular opacity and myopia were stronger in the current study than have previously been found. Longitudinal studies to confirm the association are warranted.

摘要

目的

建立近视与晶状体混浊之间的关系。

设计

基于人群的横断面研究。

参与者

来自索尔兹伯里眼科评估项目的2520名年龄在65至84岁之间的参与者。

方法

参与者填写了关于病史、社会习惯以及详细的远距离眼镜佩戴史的问卷。他们接受了全面的眼部检查。使用威尔默分级系统拍摄晶状体照片以评估晶状体混浊情况。采用广义估计方程的多变量逻辑回归模型来分析晶状体混浊类型与近视程度之间的关系,同时考虑潜在的混杂因素。

主要观察指标

后囊下混浊、皮质混浊或核混浊的存在情况。

结果

发现近视与核混浊和后囊下混浊均存在显著关联。对于核混浊,近视度数在-0.50屈光度(D)至-1.99 D之间时,比值比(OR)为2.25(P<0.001);近视度数在-2.00 D至-3.99 D之间时,OR为3.65(P<0.001);近视度数在-4.00 D至-5.99 D之间时,OR为4.54(P<0.001);近视度数在-6.00 D及以上时,OR为3.61(P = 0.002)。对于后囊下白内障,近视度数在-0.50 D至-1.99 D之间时,OR为1.59(P = 0.11);近视度数在-2.00 D至-3.99 D之间时,OR为3.22(P = 0.002);近视度数在-4.00 D至-5.99 D之间时,OR为5.36(P<0.001);近视度数在-6.00 D及以上时,OR为12.34(P<0.001)。未发现近视与皮质混浊之间存在关联。对于21岁前戴眼镜者和未戴眼镜者,后囊下混浊与近视之间的关联强度相同;对于核混浊,21岁后开始戴眼镜的近视者的OR显著更高。

结论

这些结果证实了先前报道的近视、后囊下混浊和核混浊之间的关联。此外,近视者中早期戴眼镜与后囊下混浊之间存在强关联,而与核混浊无关,这表明在后囊下混浊的情况下近视可能先于混浊出现,但核混浊并非如此。在本研究中,后囊下混浊与近视之间的关联强度比先前发现的更强。有必要进行纵向研究以证实这种关联。

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