Peaks of circumpapillary retinal nerve fibre layer and associations in healthy eyes: the Beijing Eye Study 2011

Author:

Zhang Qing,Xu Liang,Zhao Liang,Jonas Rahul A,Wang Ya XingORCID,Jonas Jost BORCID

Abstract

AimsTo investigate the distribution and associations of the circumpapillary retinal nerve fibre layer thickness (RNFLT) profile, characterised as peak height and peak position, in healthy eyes.Methods667 healthy participants (294 male) were randomly selected from the Beijing Eye Study 2011. RNFLT was measured at 768 points at 3.4 mm circumpapillary position using spectral-domain optical coherence tomography (OCT). The location and height of the superior temporally peak (PeakST), superior nasal peak (PeakSN) and inferior temporal peak (PeakIT) were assessed.ResultsThe RNFLT was thickest at PeakIT (194±25 µm; location: 288±12°), followed by PeakST (182±25 µm; 73±10°) and PeakSN (125±23 µm; 135°±13°). In multivariable analysis, peak RNFLT decreased with longer axial length (p<0.001; correlation coefficient beta: −0.18 to −0.15; all peaks), older age (all p<0.01, beta: −0.10; PeakST and PeakIT), female gender (p=0.026, beta: −0.09; PeakST), and larger parapapillary gamma zone and beta zone width (p≤0.004, beta: −0.16 to−0.11; PeakSN). The temporal peaks were located more closely to the horizontal line in women (p≤0.020, beta: 0.09–0.11) and with longer axial length (p<0.001, beta: 0.27–0.31), while they were located more inferiorly in eyes with larger Bruch’s membrane openings (BMOs) (p≤0.01, beta:0.10~0.11).ConclusionsPeak RNFLT decreased by 0.34 µm for each increase of year in age (PeakST and PeakIT), by 3.2–3.5 µm for each 1 mm increase in axial length (all three peaks), and was 4.5 µm thinner in women than in men. The position of temporal peaks depended on gender, axial length and BMO diameter. These associations should be taken into count in OCT-based RNFLT assessment for disease finding, especially in glaucoma evaluation.

Funder

National Natural Science Foundation of China

Publisher

BMJ

Subject

Cellular and Molecular Neuroscience,Sensory Systems,Ophthalmology

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