Purpose: Genetic variants identified through population-based genome-wide studies are generally of high frequency, exerting their action in the central part of the refractive error spectrum. However, the power to identify associations with variants of lower minor allele frequency is greatly reduced, requiring considerable sample sizes. Here we aim to assess the impact of rare variants on genetic variation of refractive errors in a very large general population cohort. Methods: Genetic association analyses of non-cyclopaedic autorefraction calculated as mean spherical equivalent (SPHE) used whole-exome sequence genotypic information from 50,893 unrelated participants in the UK Biobank of European ancestry. Gene-based analyses tested for asso...
Myopia is the most common human eye disorder and it results from complex genetic and environmental c...
Visual refractive errors (REs) are complex genetic traits with a largely unknown etiology. To date, ...
Visual refractive errors (REs) are complex genetic traits with a largely unknown etiology. To date, ...
Purpose: Genetic variants identified through population-based genome-wide studies are generally of ...
Refractive error, measured here as mean spherical equivalent (SER), is a complex eye condition cause...
Refractive errors are the most common ocular disorders worldwide and may lead to blindness. Although...
Refractive errors, in particular myopia, are a leading cause of morbidity and disability worldwide. ...
IMPORTANCE To date, relatively few genes responsible for a fraction of heritability have been identi...
Genome-wide association studies (GWAS) have revealed that the genetic contribution to certain comple...
textabstractTo identify genetic variants associated with refractive astigmatism in the general popul...
Refractive errors such as myopia are the leading cause of reversible visual impairment worldwide wit...
To identify genetic variants associated with refractive astigmatism in the general population, meta-...
Myopia is the most common human eye disorder and it results from complex genetic and environmental c...
Refractive errors are associated with a range of pathological conditions, such as myopic maculopathy...
Myopia is the most common human eye disorder and it results from complex genetic and environmental c...
Visual refractive errors (REs) are complex genetic traits with a largely unknown etiology. To date, ...
Visual refractive errors (REs) are complex genetic traits with a largely unknown etiology. To date, ...
Purpose: Genetic variants identified through population-based genome-wide studies are generally of ...
Refractive error, measured here as mean spherical equivalent (SER), is a complex eye condition cause...
Refractive errors are the most common ocular disorders worldwide and may lead to blindness. Although...
Refractive errors, in particular myopia, are a leading cause of morbidity and disability worldwide. ...
IMPORTANCE To date, relatively few genes responsible for a fraction of heritability have been identi...
Genome-wide association studies (GWAS) have revealed that the genetic contribution to certain comple...
textabstractTo identify genetic variants associated with refractive astigmatism in the general popul...
Refractive errors such as myopia are the leading cause of reversible visual impairment worldwide wit...
To identify genetic variants associated with refractive astigmatism in the general population, meta-...
Myopia is the most common human eye disorder and it results from complex genetic and environmental c...
Refractive errors are associated with a range of pathological conditions, such as myopic maculopathy...
Myopia is the most common human eye disorder and it results from complex genetic and environmental c...
Visual refractive errors (REs) are complex genetic traits with a largely unknown etiology. To date, ...
Visual refractive errors (REs) are complex genetic traits with a largely unknown etiology. To date, ...