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Heritability of optic disc and cup measured by the heidelberg retinal tomography in chinese: the guangzhou twin eye study.

机译:海德堡视网膜断层摄影术测量的视盘和杯的遗传力:广州双眼研究。

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PURPOSE: To assess the heritability of disc area (DA), cup area (CA), and cup-disc area ratio (CDAR) as intermediate phenotypes for glaucoma in Chinese subjects in a classic twin study. METHODS: Twins (n = 1160) aged 7 to 15 years were identified in the Guangzhou Twin Registry. Optic disc parameters were measured with a Heidelberg Retina Tomograph (HRT; Heidelberg Engineering GmbH, Heidelberg, Germany) by the same examiner and grader. Zygosity was confirmed by genotyping with 16 polymorphic markers in all same-sex twin pairs. The DA, CA, and CDAR of the right eyes were chosen as the traits of interest in the analysis. Heritability was assessed by structural variance component genetic modeling, with Mx quantitative genetic modeling software, after adjustment for age and gender. RESULTS: Of those recruited, 1114 twins were identified in the analysis, including 355 monozygotic (MZ) and 202 dizygotic (DZ) twin pairs. The intraclass correlation coefficients were 0.79 for DA, 0.83 for CA, and 0.80 for CDAR in MZ pairs and 0.30, 0.37, and 0.35, respectively, in DZ pairs. The age- and sex-adjusted variance component model identified additive genetic and unshared environmental effects (AE model) being best fit for DA, CA, and CDAR. This best-fitting model yielded 77.3% additive genetic (95%CI: 73.0%-80.8%) and 22.7% unshared environment (95% CI: 19.2%-27.0%) for DA, 82.7% (95% CI:79.4%-85.5%) and 17.3% (95% CI: 14.5%-20.6%) for CA, 78.6% (95% CI: 74.5%-82.0%) and 21.4% (95% CI: 18.0%-25.4%) for CDAR. CONCLUSIONS: The variance of optic nerve head parameters (DA, CA, and CDAR) appears to be attributable to additive genetic and unshared environmental effects. Approximately 80% of these phenotypic variances are genetically determined.
机译:目的:在一项经典的双胞胎研究中,评估作为中国青光眼的中间表型的椎间盘面积(DA),杯面积(CA)和杯碟面积比(CDAR)的遗传力。方法:在广州双胞胎登记处确定年龄为7至15岁的双胞胎(n = 1160)。视盘参数是由Heidelberg Retina断层扫描仪(HRT; Heidelberg Engineering GmbH,Heidelberg,德国)由同一检验员和分级机来测量的。通过在所有同性双胞胎对中用16个多态性标记进行基因分型来确认接合性。选择右眼的DA,CA和CDAR作为分析中感兴趣的特征。调整年龄和性别后,通过结构变异成分遗传建模和Mx定量遗传建模软件评估遗传力。结果:在这些被招募者中,分析中鉴定出1114对双胞胎,包括355对单卵双胎(MZ)和202对双卵双胞胎(DZ)。在MZ对中,类内相关系数对于DA为0.79,对于CA为0.83,对于CDAR为0.80,在DZ对中,分别为0.30、0.37和0.35。年龄和性别调整后的方差成分模型确定了最适合DA,CA和CDAR的累加遗传和非共享环境效应(AE模型)。这个最适合的模型为DA带来了77.3%的附加遗传(95%CI:73.0%-80.8%)和22.7%的非共享环境(95%CI:19.2%-27.0%),82.7%(95%CI:79.4%-对于CA,85%)和17.3%(95%CI:14.5%-20.6%),对于CDAR为78.6%(95%CI:74.5%-82.0%)和21.4%(95%CI:18.0%-25.4%)。结论:视神经乳头参数(DA,CA和CDAR)的差异似乎可归因于遗传的累加和非共享的环境影响。这些表型变异的大约80%是通过遗传方法确定的。

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