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Cycloplegic refractions of premature infants.

Cyclopentolate refractions of 146 premature infants disclosed higher incidences of myopia and anisometropia than those reported for full-term infants. Also, more than 70% of the premature infants had I diopter or more of astigmatism; 83% of the astigmatism was against-the-rule. Infants with shorter gestational periods had more severe myopia and astigmatism. Infants born very prematurely should undergo follow-up refractions to determine whether they retain refractive errors large enough to interfere with visual function.

Age Factors↗

Correlations between familial refractive error and children's non-cycloplegic refractions.

We examined the spherical equivalent refractions of 237 subjects who had been seen four or more times in a longitudinal study of refractive development in normal children. We employed both photorefraction and autorefraction using a Canon R1 autorefractor. We performed an analysis of variance (F-test for Lack of Fit) to determine the significance of a linear regression in fitting these refractions against three different measures of familial refractive status. One measure included only the number of myopic parents, a second took into account the number of hyperopic parents, and a third included the refractive states of extended genetic relatives. We found no significant correlation between photorefractive data and familial refractions; however, we did find significant, albeit weak, correlations between all measures of familial refractive status and infrared autorefractions of their children. A linear relationship between autorefractive data and overall familial refractive state was found to be most significant. Linear regression of children's autorefractions against a measure of parental myopia and hyperopia was less significant, while a linear model fitting only a measure of parental myopia was least significant, in addition to showing other non-linear trends. We attribute the failure to find a significant correlation between parent and offspring refractions using children's photorefractive data to vignetting by the apparatus and to the short distance of the fixation target. We believe the significant correlation patterns found with the autorefractor reflect the inheritance patterns of parental and familial refractive states.

Adolescent↗

Cycloplegic and mydriatic agents for routine ophthalmologic examination: a survey of pediatric ophthalmologists.

INTRODUCTION: We have used a mixture of tropicamide 1% and cyclopentolate 2% for routine cycloplegia in children. Because our hospital pharmacy expressed reluctance to prepare this mixture, we were interested in the current standard of care among pediatric ophthalmologists. METHODS: A survey was mailed to all members and associate members of the American Association for Pediatric Ophthalmology and Strabismus. Responses were tabulated from 522 respondents (62%). RESULTS: Mixtures were used by 22% of respondents for neonates and by 40% for older children. The most popular mixtures were cyclopentolate and phenylephrine for neonates and cyclopentolate, phenylephrine, and tropicamide for older children. CONCLUSION: Although a commercially available mixture (Cyclomydril; Alcon, Ft. Worth, TX) has found wide acceptance for treatment of neonates, ophthalmologists seeking stronger concentrations for older children must rely on alternate sources. There would appear to be a market for such a product.

Child, Preschool↗

Cycloplegic refractions in infants and young children.

We studied groups of normal infants and infants with amblyopia and esoropia to determine the incidence of infantile astigmatism. Under cycloplegia, 19% of normal infants had astigmatism; this was at least twice the incidence in adults, but less than one-hale that found by noncycloplegic refractions of infants. During the first three postnatal years the incidence of astigmatism and distributions of spherical equivalents and anisometropia did not distinguish normal patients from most of those with esotropia and amblyopia.

Adult↗

Cycloplegic refraction in esotropic children. Cyclopentolate versus atropine.

Retinoscopy was performed on a population of predominantly white esotropic children younger than 5.5 years with cyclopentolate 1% and atropine 1.0%. Atropine 1.0% revealed +0.34 diopters more hyperopia than cyclopentolate 1.0%, when the mean differences between the two drugs were examined. Mean difference analysis would probably indicate that atropine retinoscopy was unnecessary. However, 22% of the children had +1.0 diopters or more of hyperopia uncovered by atropine. This significant subpopulation suggests that in young patients with esotropia, an atropine refraction is essential to uncover the maximum amount of hyperopia. Almost all of this subgroup with +1.00 or greater hyperopia had an initial cyclopentolate retinoscopy of +2.00 diopters or more. Therefore, retinoscopy using atropine cycloplegia becomes even more important in this population. There was a trend for the greater differences to be in children older than age 2 years. However, these values were not statistically significant.

Accommodation, Ocular↗