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Real-World Simulation of an Alternative Retinopathy of Prematurity Screening System in Thailand: A Pilot Study
Insights
A new screening system using the Pictor camera allows trained healthcare workers to capture retinal images for retinopathy of prematurity (ROP) in infants. This method is effective for identifying infants needing further examination for ROP.
Area of Science:
- Ophthalmology
- Neonatal Care
- Medical Imaging
Background:
- Retinopathy of prematurity (ROP) is a significant cause of visual impairment in premature infants.
- Early detection and treatment are crucial to prevent vision loss.
- Screening systems need to be efficient and accessible, especially in middle-income countries.
Purpose of the Study:
- To evaluate an alternative ROP screening system for identifying infants requiring ophthalmologist examination.
- To assess the feasibility and accuracy of a non-contact retinal camera for ROP screening in a middle-income country.
Main Methods:
- A non-ophthalmologist healthcare worker obtained retinal images of premature infants using the Pictor non-contact retinal camera.
- Images were graded remotely by ROP experts for gradability and presence of pre-plus or plus disease.
- Study conducted prospectively at Chulalongkorn University Hospital, Bangkok, Thailand.
Main Results:
- 69.4% of infant imaging sessions yielded gradable images.
- Sensitivity for identifying type 1 ROP was 1.0 for both graders among gradable images.
- Specificity was 0.93 for grader 1 and 0.74 for grader 2.
Conclusions:
- It is feasible for trained non-ophthalmologist healthcare workers to obtain quality retinal images using the Pictor camera.
- The system effectively identifies infants with type 1 ROP requiring treatment.
- This approach can improve ROP screening accessibility in resource-limited settings.
Purpose:
To evaluate an alternative retinopathy of prematurity (ROP) screening system that identifies infants meriting examination by an ophthalmologist in a middle-income country.
Methods:
The authors hypothesized that grading posterior pole images for the presence of pre-plus or plus disease has high sensitivity to identify infants with type 1 ROP that requires treatment. Part 1 of the study evaluated the feasibility of having a non-ophthalmologist health care worker obtain retinal images of prematurely born infants using a non-contact retinal camera (Pictor; Volk Optical, Inc., Mentor, OH) that were of sufficient quality to grade for pre-plus or plus disease. Part 2 investigated the accuracy of grading these images to identify infants with type 1 ROP. The authors prospectively recruited infants at Chulalongkorn University Hospital (Bangkok, Thailand). On days infants underwent routine ROP screening, a trained health care worker imaged their retinas with Pictor. Two ROP experts graded these serial images from a remote location for image gradability and posterior pole disease.
Results:
Fifty-six infants were included. Overall, 69.4% of infant imaging sessions were gradable. Among gradable images, the sensitivity of both graders for identifying an infant with type 1 ROP by grading for the presence of pre-plus or plus disease was 1.0 (95% confidence interval [CI]: 0.31 to 1.0) for grader 1 and 1.0 (95% CI: 0.40 to 1.0) for grader 2. The specificity was 0.93 (95% CI: 0.76 to 0.99) for grader 1 and 0.74 (95% CI: 0.53 to 0.88) for grader 2.
Conclusions:
It was feasible for a trained non-ophthalmologist health care worker to obtain retinal images of infants using the Pictor that were of sufficient quality to identify infants with type 1 ROP. [J Pediatr Ophthalmol Strabismus. 2018;55(4):245-253.].
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