To determine the distribution of peripheral refraction, including astigmatism, in 7- and 14-year-old Chinese children.2134 7-year-old and 1780 14-year-old children were measured with cycloplegic central and horizontal peripheral refraction (15° and 30° at temporal and nasal visual fields).7- and 14-year-old children included 9 and 594, respectively, with moderate and high myopia (≤-3.0?D), 259 and 831 with low myopia (-2.99 to -0.5?D), 1207 and 305 with emmetropia (-0.49 to +1.0?D), and 659 and 50 with hyperopia (>1.0?D), respectively. Myopic children had relative peripheral hyperopia while hyperopic and emmetropic children had relative peripheral myopia, with greater changes in relative peripheral refraction occurring in the nasal than ...
Abstract Background Prevention of myopia should begin before school age. However, few population-bas...
Purpose. To compare the patterns of relative peripheral refractions of myopic children who were curr...
Purpose: Currently there are attempts to slow myopia progression by manipulating peripheral refracti...
Purpose: To determine the distribution of peripheral refraction, including astigmatism, in 7- and 14...
PURPOSE: To examine the prevalence of refractive errors in children aged 3-6 years in China. METHODS...
Purpose To test the hypothesis that relative peripheral hyperopia predicts development and progressi...
Purpose: To examine the prevalence of refractive errors in children aged 3–6 years in China. Methods...
Purpose To determine prevalence of refractive (RA), corneal (CA) and internal astigmatism (IA), incl...
Purpose To document the distribution of ocular biometry and to evaluate its associations with ref...
Purpose: To describe distributions of ocular biometry and their associations with refraction in 7- a...
AbstractInterest in peripheral refractive errors has increased as it was hypothesized that periphera...
10.1167/iovs.11-7290Investigative Ophthalmology and Visual Science52117880-7887IOVS
To describe distributions of ocular biometry and their associations with refraction in 7- and 14-yea...
PURPOSE: To examine the prevalence of refractive errors and prevalence and causes of vision loss amo...
To examine the prevalence of refractive errors and prevalence and causes of vision loss among presch...
Abstract Background Prevention of myopia should begin before school age. However, few population-bas...
Purpose. To compare the patterns of relative peripheral refractions of myopic children who were curr...
Purpose: Currently there are attempts to slow myopia progression by manipulating peripheral refracti...
Purpose: To determine the distribution of peripheral refraction, including astigmatism, in 7- and 14...
PURPOSE: To examine the prevalence of refractive errors in children aged 3-6 years in China. METHODS...
Purpose To test the hypothesis that relative peripheral hyperopia predicts development and progressi...
Purpose: To examine the prevalence of refractive errors in children aged 3–6 years in China. Methods...
Purpose To determine prevalence of refractive (RA), corneal (CA) and internal astigmatism (IA), incl...
Purpose To document the distribution of ocular biometry and to evaluate its associations with ref...
Purpose: To describe distributions of ocular biometry and their associations with refraction in 7- a...
AbstractInterest in peripheral refractive errors has increased as it was hypothesized that periphera...
10.1167/iovs.11-7290Investigative Ophthalmology and Visual Science52117880-7887IOVS
To describe distributions of ocular biometry and their associations with refraction in 7- and 14-yea...
PURPOSE: To examine the prevalence of refractive errors and prevalence and causes of vision loss amo...
To examine the prevalence of refractive errors and prevalence and causes of vision loss among presch...
Abstract Background Prevention of myopia should begin before school age. However, few population-bas...
Purpose. To compare the patterns of relative peripheral refractions of myopic children who were curr...
Purpose: Currently there are attempts to slow myopia progression by manipulating peripheral refracti...