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Article Dans Une Revue Biomedical optics express Année : 2017

High temporal resolution aberrometry in a 50-eye population and implications for adaptive optics error budget

Résumé

We formed a database gathering the wavefront aberrations of 50 healthy eyes measured with an original custom-built Shack-Hartmann aberrometer at a temporal frequency of 236 Hz, with 22 lenslets across a 7-mm diameter pupil, for a duration of 20 s. With this database, we draw statistics on the spatial and temporal behavior of the dynamic aberrations of the eye. Dynamic aberrations were studied on a 5-mm diameter pupil and on a 3.4 s sequence between blinks. We noted that, on average, temporal wavefront variance exhibits a n−2 power-law with radial order n and temporal spectra follow a f−1.5 power-law with temporal frequency f. From these statistics, we then extract guidelines for designing an adaptive optics system. For instance, we show the residual wavefront error evolution as a function of the number of corrected modes and of the adaptive optics loop frame rate. In particular, we infer that adaptive optics performance rapidly increases with the loop frequency up to 50 Hz, with gain being more limited at higher rates.

Dates et versions

hal-01559286 , version 1 (10-07-2017)

Identifiants

Citer

Jessica Jarosz, Pedro Mecê, Jean-Marc Conan, Cyril Petit, Michel Paques, et al.. High temporal resolution aberrometry in a 50-eye population and implications for adaptive optics error budget. Biomedical optics express, 2017, 8 (4), p. 2088-2105. ⟨10.1364/BOE.8.002088⟩. ⟨hal-01559286⟩
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