Systemic Determinants of Peripapillary Vessel Density in Healthy African Americans: The African American Eye Disease Study.
Ryuna Chang, Andrew J Nelson, Vivian LeTran, Brian Vu, Bruce Burkemper, Zhongdi Chu, Ali Fard, Amir H Kashani, Benjamin Y Xu, Ruikang K Wang, Rohit Varma, Grace M Richter
Summary
Age, sex, and systemic influences, such as diabetes duration, need to be considered when assessing changes in RPC VD in glaucoma and other ocular diseases.
Abstract
PURPOSE
To determine the relationship between systemic factors and radial peripapillary capillary (RPC) vessel density (VD) in healthy African American (AA) participants of the African American Eye Disease Study.
DESIGN
A population-based, cross-sectional study.
METHODS
A total of 4135 eyes from 2127 AA participants aged 40 years and older in Inglewood, California, were imaged for 6×6-mm optic disc scans on a spectral-domain optical coherence tomography angiography (OCTA) device. Of these, 1029 eyes from 1029 participants who met the inclusion and exclusion criteria were analyzed, including only 1 eye per participant. Custom software was used to quantify RPC VD. Multivariate linear regression was used to identify systemic factors associated with RPC VD with a significance level set at 0.05. The contribution of each variable to the final model was estimated with the magnitude of standardized regression coefficients (SRCs). The fit of the final model was measured by R.
RESULTS
The average RPC VD was 0.346±0.045. Controlling for signal strength, the systemic variables in the final multivariate model associated with reduced RPC VD were older age (β = -0.0123 per decade; SRC = -0.2733; P < .0001), male sex (β = -0.0067; SRC = -0.0716; P = .0060), and longer diabetes duration (β = -0.0022 per 5 years; SRC = -0.0527; P = .0427). The model Rwas 0.3689.
CONCLUSIONS
Age, sex, and systemic influences, such as diabetes duration, need to be considered when assessing changes in RPC VD in glaucoma and other ocular diseases. Longitudinal studies are needed to investigate whether reduced RPC VD and the factors that affect it are associated with an increased risk of developing glaucomatous nerve damage.
More by Ryuna Chang
View full profile →Structural and Functional Associations of Macular Microcirculation in the Ganglion Cell-Inner Plexiform Layer in Glaucoma Using Optical Coherence Tomography Angiography.
Diagnostic Performance of Macular Versus Peripapillary Vessel Parameters by Optical Coherence Tomography Angiography for Glaucoma.
Machine Learning Models for Diagnosing Glaucoma from Retinal Nerve Fiber Layer Thickness Maps.
Top Research in OCT & Imaging
Browse all →Optical coherence tomography angiography: A comprehensive review of current methods and clinical applications.
Deep learning in ophthalmology: The technical and clinical considerations.
Anterior segment optical coherence tomography.
Discussion
Comments and discussion will appear here in a future update.