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Published on: August 25, 2021
The clinical features and the factors affecting visual prognosis in pediatric open-globe ınjuries
1Department of Ophthalmology, Tepecik Training and Research Hospital, University of Health Sciences, Izmir, Turkey.
Insights
Pediatric open-globe injuries with globe rupture, relative afferent pupillary defect, large injury size, and non-metal object cause are associated with poor visual outcomes. Early intervention and appropriate management are crucial for improving vision prognosis in children.
Area of Science:
- Ophthalmology
- Pediatric Traumatology
- Vision Science
Background:
- Pediatric open-globe injuries represent a significant cause of vision impairment in children.
- Understanding factors influencing visual prognosis is crucial for effective management and patient counseling.
Purpose of the Study:
- To identify clinical features and factors impacting visual prognosis in pediatric open-globe injuries.
- To compare characteristics between children with poor and good visual outcomes.
Main Methods:
- Retrospective study of 223 children with open-globe injuries.
- Classification into poor-vision (final LVA > 0.70) and good-vision (final LVA ≤ 0.70) groups.
- Analysis of demographic data, injury characteristics, ocular trauma score (OTS), and visual acuity outcomes.
Main Results:
- Globe rupture, relative afferent pupillary defect (RAPD), larger injury size, and non-metal object injuries were associated with poor final vision.
- Poor prognostic factors included low OTS, poor initial vision, globe rupture, RAPD, large injury size, zone 2 or 3 involvement, and non-metal object injuries.
- Final visual acuity was negatively correlated with OTS and positively correlated with injury size and initial visual acuity.
Conclusions:
- Key poor prognostic factors for vision in pediatric open-globe injuries include low OTS, poor initial vision, globe rupture, RAPD, large injury size, and non-metal object etiology.
- Identifying these factors aids in predicting visual outcomes and guiding treatment strategies.
- Further research may focus on specific interventions to mitigate these negative prognostic indicators.
Purpose:
To investigate clinical features and factors affecting visual prognosis after pediatric open-globe injuries.
Methods:
Retrospective study of 223 children with open-globe injury was conducted. Children with final logMAR visual acuity (LVA) > 0.70 were determined as poor-vision group (group 1, n = 108) and those with final LVA ≤ 0.70 as good-vision group (group 2, n = 115). Demographic characteristics (age, gender, and damaged eye), time between trauma and surgery, ocular trauma score (OTS), follow-up time, injury size, initial and final visual acuity levels, injury type (penetrating injury, globe rupture, perforating injury, and intraocular foreign body injury), injury localization (zone 1 = within the corneal and/or limbal area, zone 2 = within the scleral area extending 5 mm back from the limbus, and zone 3 = within the area posterior to zone 2), injury cause [metal objects (fork, knife, needle), broken glass, blunt objects (ball, punch), pen-pencil, and unidentified objects], and accompanying ocular findings of the groups were detected, and comparisons were done. Additionally, effects of age, time between trauma and surgery, OTS, injury size, follow-up time, initial LVA, injury type, and injury zone on final LVA were analyzed in both groups.
Results:
Mean age was 9.1 ± 2.0 years. There were 151 males and 72 females. Compared to group 1, group 2 had better initial and final visions (1.21 ± 0.26 vs 0.60 ± 0.28, p < 0.001 for initial LVA; 1.00 ± 0.32 vs 0.30 ± 0.13, p < 0.001 for final LVA), greater OTS (1.72 ± 0.53 vs 3.73 ± 0.61, p = 0.025), and smaller injury size (10.4 ± 3.5 vs 5.8 ± 2.4 mm, p = 0.002). Globe rupture (p = 0.015) and relative afferent pupillary defect (RAPD) (p = 0.037) were higher in group 1, while penetrating injury (p = 0.044), zone 1 involvement (p = 0.038), and metal object injury (p = 0.041) were higher in group 2. Based on multivariate analysis, the presences of globe rupture (p = 0.024) and RAPD (p = 0.035), the involvement without zone 1 (p = 0.042), and the injury without metal object (fork, knife, needle) (p = 0.046) were associated with poor final vision. Final LVA (for group 1 and group 2) was negatively correlated with OTS (r = - 0.398, p = 0.037; r = - 0.369, p = 0.040), while positively correlated with injury size (r = 0.412, p = 0.031; r = 0.318, p = 0.046) and initial LVA (r = 0.335, p = 0.043; r = 0.402, p = 0.034).
Conclusion:
In our study, poor prognostic factors affecting final vision were low OTS, poor initial vision, the presences of globe rupture and RAPD, the large injury size, the involvement without zone 1, and the injury without metal object (fork, knife, needle).
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