Resumen
Methods: Two 3×3-mm optical coherence tomography angiography scans (centered on the fovea) were acquired in both eyes of 175 subjects. An image of the superficial plexus was extracted from each scan and segmented twice by a single observer. Four quantitative FAZ morphology metrics (area, axis ratio, acircularity, major horizontal axis angle) were calculated, and a variance components analysis was performed. Results: Mean (±SD) age was 27.9 ± 11.9 years, and 55% were female. Area had the largest amount of variance resulting from intersubject differences (93.1%). In contrast, there was large interocular variance for axis ratio, acircularity, and major horizontal axis angle (55.0%, 53.7%, 70.7%, respectively), though only axis ratio showed significant asymmetry between fellow eyes (P < 0.05). Neither repeated images from the same eye nor repeated segmentation on the same image were significant sources of variance. Conclusions: Metrics of FAZ morphology show excellent repeatability and reliability. Excluding FAZ area, there was a high amount of variance attributed to interocular differences for the other FAZ metrics; therefore, the fellow eye should not be considered a control for FAZ studies when using these metrics. Translational Relevance: Vision scientists must be prudent when choosing FAZ metrics, as they display varying degrees of within-subject differences relative to between-subject differences. It seems likely that different metrics will be best suited for different tasks, such as monitoring small changes over time within a single subject or assessing whether a given FAZ is abnormal.
| Idioma original | English |
|---|---|
| Número de artículo | 20 |
| Publicación | Translational Vision Science and Technology |
| Volumen | 7 |
| N.º | 5 |
| DOI | |
| Estado | Published - sept 2018 |
Nota bibliográfica
Publisher Copyright:© 2018 The Authors.
Financiación
The authors thank Erin Curran, Mara Goldberg, Jamil Khan, Madia Russillo, Phyllis Summerfelt, Melissa Wilk, Vesper Williams, and Erica Woertz for their help recruiting and imaging subjects.Supported in part by the National Eye Institute of the National Institutes of Health (NIH) under award numbers R01EY024969 and P30EY001931, and by the NIH National Institute of Aging under award number T35AG029793. This investigation was conducted in a facility constructed with support from the Research Facilities Improvement Program, Grant C06RR016511, from the National Center for Research Resources, NIH. The content is solely the responsibility of the authors and does not necessarily represent the official views of the NIH. Rachel Linderman is the recipient of a Fight for Sight–Nick Cacciola Summer Student Fellowship Award. Manickam Muthiah is the recipient of a Keeler–Royal College of Ophthalmologists Scholarship. Supported in part by the National Eye Institute of the National Institutes of Health (NIH) under award numbers R01EY024969 and P30EY001931, and by the NIH National Institute of Aging under award number T35AG029793. This investigation was conducted in a facility constructed with support from the Research Facilities Improvement Program, Grant C06RR016511, from the National Center for Research Resources, NIH. The content is solely the responsibility of the authors and does not necessarily represent the official views of the NIH. Rachel Linderman is the recipient of a Fight for Sight–Nick Cacciola Summer Student Fellowship Award. Man-ickam Muthiah is the recipient of a Keeler–Royal College of Ophthalmologists Scholarship.
| Financiadores | Número del financiador |
|---|---|
| NIH/National Institute of Aging | |
| National Eye Institute of the National Institutes of Health | |
| National Institutes of Health (NIH) | |
| National Institute on Aging | T35AG029793 |
| National Eye Institute (NEI) | P30EY001931, R01EY024969 |
| National Center for Research Resources | C06RR016511 |
| Fight for Sight Inc |
ASJC Scopus subject areas
- Biomedical Engineering
- Ophthalmology
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