Effects of age and axial length on choroidal stratified structure in normal eyes

To quantify the choroidal structures of normal eyes by optical coherence tomography (OCT)-based binarization and evaluate the relationships among age, refractive power, and ocular axial length. This was a retrospective observational study. One hundred and eighty nine eyes of 189 subjects without ocu...

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Veröffentlicht in:Scientific reports 2024-01, Vol.14 (1), p.2527-7, Article 2527
Hauptverfasser: Ito, Yuki, Endo, Hiroaki, Kase, Satoru, Takahashi, Mitsuo, Sonoda, Shozo, Sakoguchi, Tomonori, Sakamoto, Taiji, Ishida, Susumu, Kase, Manabu
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Sprache:eng
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Zusammenfassung:To quantify the choroidal structures of normal eyes by optical coherence tomography (OCT)-based binarization and evaluate the relationships among age, refractive power, and ocular axial length. This was a retrospective observational study. One hundred and eighty nine eyes of 189 subjects without ocular diseases were examined by enhanced depth imaging (EDI)-OCT. A choroidal OCT horizontal image with a width of 1500 μm centered on the fovea was binarized. The lumen, stroma, and total choroidal area in the choriocapillaris (CC), Sattler’s layer (SL), and Haller's layer (HL) were measured, and the ratio of the luminal area to total choroidal area (L/C ratio) was calculated. Multiple regression analysis was performed for choroidal parameters in each choroidal layer and for age, refractive power, and ocular axial length. Multiple regression analysis showed that an older age was significantly correlated with a lower choroidal area and the L/C ratio in all choroidal layers (each P  
ISSN:2045-2322
2045-2322
DOI:10.1038/s41598-024-52627-x