The KIDROP model of combining strategies for providing retinopathy of prematurity screening in underserved areas in India using wide-field imaging, tele-medicine, non-physician graders and smart phone reporting
Aim: To report the Karnataka Internet Assisted Diagnosis of Retinopathy of Prematurity (KIDROP) program for retinopathy of prematurity (ROP) screening in underserved rural areas using an indigenously developed tele-ROP model. Materials and Methods: KIDROP currently provides ROP screening and treatme...
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doaj-6dc8b1c82c5240c88eaea9c67cd117422020-11-24T23:44:17ZengWolters Kluwer Medknow PublicationsIndian Journal of Ophthalmology0301-47381998-36892014-01-01621414910.4103/0301-4738.126178The KIDROP model of combining strategies for providing retinopathy of prematurity screening in underserved areas in India using wide-field imaging, tele-medicine, non-physician graders and smart phone reportingAnand VinekarClare GilbertMangat DograMathew KurianGangadharan ShaineshBhujang ShettyNoel BauerAim: To report the Karnataka Internet Assisted Diagnosis of Retinopathy of Prematurity (KIDROP) program for retinopathy of prematurity (ROP) screening in underserved rural areas using an indigenously developed tele-ROP model. Materials and Methods: KIDROP currently provides ROP screening and treatment services in three zones and 81 neonatal units in Karnataka, India. Technicians were trained to use a portable Retcam Shuttle (Clarity, USA) and validated against ROP experts performing indirect ophthalmoscopy. An indigenously developed 20-point score (STAT score) graded their ability (Level I to III) to image and decide follow-up based on a three-way algorithm. Images were also uploaded on a secure tele-ROP platform and accessed and reported by remote experts on their smart phones (iPhone, Apple). Results: 6339 imaging sessions of 1601 infants were analyzed. A level III technician agreed with 94.3% of all expert decisions. The sensitivity, specificity, positive predictive value and negative predictive value for treatment grade disease were 95.7, 93.2, 81.5 and 98.6 respectively. The kappa for technicians to decide discharge of babies was 0.94 (P < 0.001). Only 0.4% of infants needing treatment were missed.The kappa agreement of experts reporting on the iPhone vs Retcam for treatment requiring and mild ROP were 0.96 and 0.94 (P < 0.001) respectively. Conclusions: This is the first and largest real-world program to employ accredited non-physicians to grade and report ROP. The KIDROP tele-ROP model demonstrates that ROP services can be delivered to the outreach despite lack of specialists and may be useful in other middle-income countries with similar demographics.http://www.ijo.in/article.asp?issn=0301-4738;year=2014;volume=62;issue=1;spage=41;epage=49;aulast=VinekarLasikcorneal scarscorneoplastiquepremium cataract surgeryrefractive complicationsradial keratotomypterygiumpingueculaastigmatismcorneal scarsAntioxidantselectromagnetic rationglutathionelensoxidative stress2-ethylpyridineapoptosisARPE-19 cellscigarette smoke toxicantmitochondrial membrane potentialreactive oxygen/nitrogen speciesIntacskeratoconusnomogramAllograftautograftcell-based therapylimbuslimbal stem cell deficiencylimbal transplantationnichestem cellsInfant blindnessiPhonemiddle-income countriesnon-physician gradersRetcamretinopathy of prematurity (ROP)rural areasscreeningsmart phonestelemedicinetele-ophthalmologytele-ROPwide-field digital imaging |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Anand Vinekar Clare Gilbert Mangat Dogra Mathew Kurian Gangadharan Shainesh Bhujang Shetty Noel Bauer |
spellingShingle |
Anand Vinekar Clare Gilbert Mangat Dogra Mathew Kurian Gangadharan Shainesh Bhujang Shetty Noel Bauer The KIDROP model of combining strategies for providing retinopathy of prematurity screening in underserved areas in India using wide-field imaging, tele-medicine, non-physician graders and smart phone reporting Indian Journal of Ophthalmology Lasik corneal scars corneoplastique premium cataract surgery refractive complications radial keratotomy pterygium pinguecula astigmatism corneal scars Antioxidants electromagnetic ration glutathione lens oxidative stress 2-ethylpyridine apoptosis ARPE-19 cells cigarette smoke toxicant mitochondrial membrane potential reactive oxygen/nitrogen species Intacs keratoconus nomogram Allograft autograft cell-based therapy limbus limbal stem cell deficiency limbal transplantation niche stem cells Infant blindness iPhone middle-income countries non-physician graders Retcam retinopathy of prematurity (ROP) rural areas screening smart phones telemedicine tele-ophthalmology tele-ROP wide-field digital imaging |
author_facet |
Anand Vinekar Clare Gilbert Mangat Dogra Mathew Kurian Gangadharan Shainesh Bhujang Shetty Noel Bauer |
author_sort |
Anand Vinekar |
title |
The KIDROP model of combining strategies for providing retinopathy of prematurity screening in underserved areas in India using wide-field imaging, tele-medicine, non-physician graders and smart phone reporting |
title_short |
The KIDROP model of combining strategies for providing retinopathy of prematurity screening in underserved areas in India using wide-field imaging, tele-medicine, non-physician graders and smart phone reporting |
title_full |
The KIDROP model of combining strategies for providing retinopathy of prematurity screening in underserved areas in India using wide-field imaging, tele-medicine, non-physician graders and smart phone reporting |
title_fullStr |
The KIDROP model of combining strategies for providing retinopathy of prematurity screening in underserved areas in India using wide-field imaging, tele-medicine, non-physician graders and smart phone reporting |
title_full_unstemmed |
The KIDROP model of combining strategies for providing retinopathy of prematurity screening in underserved areas in India using wide-field imaging, tele-medicine, non-physician graders and smart phone reporting |
title_sort |
kidrop model of combining strategies for providing retinopathy of prematurity screening in underserved areas in india using wide-field imaging, tele-medicine, non-physician graders and smart phone reporting |
publisher |
Wolters Kluwer Medknow Publications |
series |
Indian Journal of Ophthalmology |
issn |
0301-4738 1998-3689 |
publishDate |
2014-01-01 |
description |
Aim: To report the Karnataka Internet Assisted Diagnosis of Retinopathy of Prematurity (KIDROP) program for retinopathy of prematurity (ROP) screening in underserved rural areas using an indigenously developed tele-ROP model. Materials and Methods: KIDROP currently provides ROP screening and treatment services in three zones and 81 neonatal units in Karnataka, India. Technicians were trained to use a portable Retcam Shuttle (Clarity, USA) and validated against ROP experts performing indirect ophthalmoscopy. An indigenously developed 20-point score (STAT score) graded their ability (Level I to III) to image and decide follow-up based on a three-way algorithm. Images were also uploaded on a secure tele-ROP platform and accessed and reported by remote experts on their smart phones (iPhone, Apple). Results: 6339 imaging sessions of 1601 infants were analyzed. A level III technician agreed with 94.3% of all expert decisions. The sensitivity, specificity, positive predictive value and negative predictive value for treatment grade disease were 95.7, 93.2, 81.5 and 98.6 respectively. The kappa for technicians to decide discharge of babies was 0.94 (P < 0.001). Only 0.4% of infants needing treatment were missed.The kappa agreement of experts reporting on the iPhone vs Retcam for treatment requiring and mild ROP were 0.96 and 0.94 (P < 0.001) respectively. Conclusions: This is the first and largest real-world program to employ accredited non-physicians to grade and report ROP. The KIDROP tele-ROP model demonstrates that ROP services can be delivered to the outreach despite lack of specialists and may be useful in other middle-income countries with similar demographics. |
topic |
Lasik corneal scars corneoplastique premium cataract surgery refractive complications radial keratotomy pterygium pinguecula astigmatism corneal scars Antioxidants electromagnetic ration glutathione lens oxidative stress 2-ethylpyridine apoptosis ARPE-19 cells cigarette smoke toxicant mitochondrial membrane potential reactive oxygen/nitrogen species Intacs keratoconus nomogram Allograft autograft cell-based therapy limbus limbal stem cell deficiency limbal transplantation niche stem cells Infant blindness iPhone middle-income countries non-physician graders Retcam retinopathy of prematurity (ROP) rural areas screening smart phones telemedicine tele-ophthalmology tele-ROP wide-field digital imaging |
url |
http://www.ijo.in/article.asp?issn=0301-4738;year=2014;volume=62;issue=1;spage=41;epage=49;aulast=Vinekar |
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