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1.
Indian J Ophthalmol ; 2022 Apr; 70(4): 1313-1316
Article | IMSEAR | ID: sea-224250

ABSTRACT

Purpose: To evaluate the Canon CP?TX1 camera as a screening tool for ARFs in a pediatric population and estimate the prevalence of ARFs. Methods: In a pediatric outpatient space, largely in the immunization clinic, after obtaining parental consent, we encouraged children to be photographed from a distance of 5 feet in a dim room by using a CP?TX1 camera with the red?eye reduction feature off. Based on the captured red reflex, children were labeled as normal (symmetrical red reflexes in the two eyes, with no visible crescents); all others were considered as abnormal or positive for ARFs. All photographed children were assessed by an optometrist/refractionist for VA by age?appropriate methods. Data were entered into a 2 � 2 contingency table on statpages.org, and diagnostic indices were calculated with 95%CI. Results: With a sample of 262 children, we obtained a sensitivity of 0.82, a specificity of 0.98, a positive predictive value of 0.92, a negative predictive value of 0.94, a positive likelihood ratio of 41.06, a negative likelihood ratio of 0.17, and a prevalence of 0.24 for ARFs. Conclusion: CP?TX1 performed well as a screening tool to identify ARFs in children. Placing such a camera in an immunization clinic offers a chance to identify children with ARFs at a time when amblyopia is eminently reversible.

2.
Indian J Ophthalmol ; 2022 Jan; 70(1): 228-232
Article | IMSEAR | ID: sea-224090

ABSTRACT

Purpose: To analyze whether photoscreening can effectively detect amblyogenic risk factors in children with neurodevelopmental disability. Methods: A prospective study of 52 children attending a special school for children with neurodevelopmental disability from December 2017 to May 2018. All were initially tested with a photoscreening device: Welch Allyn® Spot® Vision Screener: model VS100 (Spot®) and further evaluated at a later date by a pediatric ophthalmologist, with a complete ocular evaluation including squint assessment, cycloplegic retinoscopy, and dilated fundus examination. The key parameters studied were demographic features, type of neurodevelopmental disability, refraction, ocular alignment, media clarity, any other ocular morbidity, and time taken for examination. The presence of amblyogenic risk factors (ARF) was analyzed as per the 2013 guidelines of the American Association for Pediatric Ophthalmology and Strabismus. Results: The mean age was 10.5 years (range: 1–17.5 years). Males (73.1%) outnumbered females (26.9%). The most common neurodevelopmental disability was cerebral palsy. Simple myopic astigmatism was the most common type of refractive error. Presence of ARF in our study was 73.1%. The sensitivity and specificity of photoscreening in detecting ARF were 96.5% and 63.61%, respectively, with a positive predictive value of 80% and negative predictive value of 92.31%. The predictive ability of photoscreening was 79.9% as per the area under curve. The average time taken for photoscreening was less than 60 s. Conclusion: Photoscreening can detect ARF with high sensitivity and reasonable specificity and is a handy, useful, and time?saving tool in screening children with neurodevelopmental disability.

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