Axial Growth and Changes in Lenticular and Corneal Power during Emmetropization in Infants
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The syndrome of microcornea, myopic chorioretinal atrophy, and telecanthus (MMCAT) is caused by mutations in ADAMTS18SLITRK6 mutations cause myopia and deafness in humans and micePerspective: how might emmetropization and genetic factors produce myopia in normal eyes?The relationship between anisometropia and amblyopiaGenome-wide meta-analyses of multiancestry cohorts identify multiple new susceptibility loci for refractive error and myopiaHuman parallels to experimental myopia? A literature review on visual deprivationLight levels, refractive development, and myopia--a speculative reviewWhy do only some hyperopes become strabismic?Alteration of the serine protease PRSS56 causes angle-closure glaucoma in mice and posterior microphthalmia in humans and miceRefractive status at birth: its relation to newborn physical parameters at birth and gestational ageIs emmetropia the natural endpoint for human refractive development? An analysis of population-based data from the refractive error study in children (RESC).Ex vivo magnetic resonance imaging of crystalline lens dimensions in chicken.Prevalence of myopia and hyperopia in 6- to 72-month-old african american and Hispanic children: the multi-ethnic pediatric eye disease studyAnalysis of postnatal eye development in the mouse with high-resolution small animal magnetic resonance imaging.Common mechanisms underlying refractive error identified in functional analysis of gene lists from genome-wide association study results in 2 European British cohortsThe effect of age on compensation for a negative lens and recovery from lens-induced myopia in tree shrews (Tupaia glis belangeri)Refractive index measurement of the mouse crystalline lens using optical coherence tomography.Nature of the refractive errors in rhesus monkeys (Macaca mulatta) with experimentally induced ametropias.Gene expression signatures in tree shrew choroid in response to three myopiagenic conditions.Normal and diseased personal eye modeling using age-appropriate lens parameters.The distribution of axial length, anterior chamber depth, lens thickness, and vitreous chamber depth in an adult population of Shahroud, Iran.Longitudinal changes in refractive error of children with infantile esotropia.Nature and nurture: the complex genetics of myopia and refractive error.Scleral gene expression during recovery from myopia compared with expression during myopia development in tree shrew.Genetic analysis of axial length genes in high grade myopia from Indian population.Patterns of mRNA and protein expression during minus-lens compensation and recovery in tree shrew scleraRefractive errors in 3-6 year-old Chinese children: a very low prevalence of myopia?Corneal curvature radius and associated factors in Chinese children: the Shandong Children Eye StudyNear heterophoria in early childhoodCorneal and crystalline lens dimensions before and after myopia onset.Calculation of crystalline lens power using a modification of the Bennett method.Six Year Refractive Change among White Children and Young Adults: Evidence for Significant Increase in Myopia among White UK Children.Darkness causes myopia in visually experienced tree shrews.Effectiveness of hyperopic defocus, minimal defocus, or myopic defocus in competition with a myopiagenic stimulus in tree shrew eyes.Normal ocular development in young rhesus monkeys (Macaca mulatta).The Relationship between Crystalline Lens Power and Refractive Error in Older Chinese Adults: The Shanghai Eye Study.The effect of simultaneous negative and positive defocus on eye growth and development of refractive state in marmosets.Refractive error change and vision improvement in moderate to severe hyperopic amblyopia after spectacle correction: Restarting the emmetropization process?Development of scotopic visual thresholds in retinopathy of prematurityLongitudinal changes in corneal curvature and its relationship to axial length in the Correction of Myopia Evaluation Trial (COMET) cohort.
P2860
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P2860
Axial Growth and Changes in Lenticular and Corneal Power during Emmetropization in Infants
description
2005 nî lūn-bûn
@nan
2005 թուականի Սեպտեմբերին հրատարակուած գիտական յօդուած
@hyw
2005 թվականի սեպտեմբերին հրատարակված գիտական հոդված
@hy
2005年の論文
@ja
2005年論文
@yue
2005年論文
@zh-hant
2005年論文
@zh-hk
2005年論文
@zh-mo
2005年論文
@zh-tw
2005年论文
@wuu
name
Axial Growth and Changes in Le ...... ing Emmetropization in Infants
@ast
Axial Growth and Changes in Le ...... ing Emmetropization in Infants
@en
type
label
Axial Growth and Changes in Le ...... ing Emmetropization in Infants
@ast
Axial Growth and Changes in Le ...... ing Emmetropization in Infants
@en
prefLabel
Axial Growth and Changes in Le ...... ing Emmetropization in Infants
@ast
Axial Growth and Changes in Le ...... ing Emmetropization in Infants
@en
P2093
P3181
P356
P1476
Axial Growth and Changes in Le ...... ing Emmetropization in Infants
@en
P2093
Donald O. Mutti
G. Lynn Mitchell
Karla Zadnik
Lisa A. Jones
Melvin L. Moeschberger
Nina E. Friedman
Sara L. Frane
Wendy K. Lin
P3181
P356
10.1167/IOVS.04-1040
P407
P577
2005-09-01T00:00:00Z