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Retinal and choroidal structure and vascularity in Chinese emmetropic and myopic children
Zhuzhu Liu1, Maria Liu2, Huaixue Gou1
1Tianjin Key Laboratory of Retinal Functions and Diseases, Tianjin Branch of National Clinical Research Center for Ocular Disease, Eye Institute and School of Optometry, Tianjin Medical University Eye Hospital, Tianjin, China.
Insights
Retinal and choroidal thickness in children are linked to axial length and vascularity. Blood perfusion in the retina and choroid, especially in the foveal area, influences these structures.
Area of Science:
- Ophthalmology
- Pediatric Ophthalmology
- Retinal Imaging
Background:
- Understanding ocular development in children is crucial for early detection of vision abnormalities.
- Axial length (AL) is a key indicator of refractive error and ocular growth.
- Optical coherence tomography angiography (OCTA) provides detailed insights into retinal and choroidal vasculature.
Purpose of the Study:
- To evaluate the structural characteristics of the retina and choroid in Chinese children.
- To investigate the correlations between ocular structure and biometric/vascular parameters.
- To utilize optical coherence tomography angiography (OCTA) for comprehensive analysis.
Main Methods:
- Prospective study including 159 children aged 6-13 years.
- Participants categorized into emmetropes, low-moderate myopes, and high myopes.
- Optical coherence biometry for AL and anterior segment measurements; OCTA for macular structure and vascular assessment.
Main Results:
- Retinal thickness positively correlated with retinal vascular density in the foveal area, but not AL.
- Retinal thickness negatively associated with AL in parafoveal and perifoveal regions.
- Choroidal thickness positively correlated with choroidal vascular volume and perfusion, and negatively with AL.
Conclusions:
- Retinal and choroidal thickness in children are associated with axial length.
- Vascular properties, including blood perfusion, significantly influence retinal and choroidal thickness.
- These findings highlight dynamic structural changes in the pediatric eye.
Purpose:
This study evaluated the structural features of the retinal and choroidal regions and their correlations with ocular biometric and vascular parameters in Chinese children using optical coherence tomography angiography (OCTA).
Methods:
A total of 159 children, 6-13 years of age, were included in this prospective study. The sample consisted of 55 emmetropes (spherical equivalent ≤ +0.75 and > -0.50 D), 53 low-moderate myopes (≤ -0.50 to > -6.00 D) and 51 high myopes without pathological changes (≤ -6.00 D). Optical coherence biometry was used to measure axial length (AL) and anterior segment parameters. Swept-source optical coherence tomography/OCTA was used to assess the macular structures and vascular characteristics in a 6 × 6 mm region centred on the macula.
Results:
In a comprehensive analysis adjusting for age, sex, AL, macular blood perfusion, intraocular pressure and anterior segment parameters, retinal thickness (RT) showed a significant positive association with deep retinal vascular density and superficial retinal vascular density in the foveal area, but not with AL. Moreover, RT exhibited a significant negative association with AL in the parafoveal and perifoveal regions. Further, a significant positive correlation was observed between choroidal thickness and both choroidal vascular volume and choriocapillaris perfusion area, along with a negative correlation with AL across the entire macular region.
Conclusions:
This study showed that the thickness of retina and choroid in Chinese children was not only associated with AL but also showed dynamic properties such as the blood perfusion of the retina and choroid, particularly in the foveal area.
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