Literature DB >> 18007708

Statistical description of wave-front aberration in the human eye.

Manuel P Cagigal, Vidal F Canales, José F Castejón-Mochón, Pedro M Prieto, Norberto López-Gil, Pablo Artal.   

Abstract

The wave aberration of the human eye has been measured by means of a Hartmann-Shack wave-front sensor in a population of normal subjects. The set of data has been used to compute the phase distribution, the power spectrum, and the structure function for the average eye to analyze the statistics of the ocular aberration considered as a phase screen. The observed statistics fits the classical Kolmogorov model of a statistically homogeneous medium. These results can be of use in understanding the average effect of aberrations on the retinal image and can serve as a tool to analyze the consequences of ocular-aberration compensation by adaptive optics, customized ophtalmic elements, or refractive surgery.

Entities:  

Year:  2002        PMID: 18007708     DOI: 10.1364/ol.27.000037

Source DB:  PubMed          Journal:  Opt Lett        ISSN: 0146-9592            Impact factor:   3.776


  4 in total

1.  Comparison of Control Algorithms for a MEMS-based Adaptive Optics Scanning Laser Ophthalmoscope.

Authors:  Kaccie Y Li; Sandipan Mishra; Pavan Tiruveedhula; Austin Roorda
Journal:  Proc Am Control Conf       Date:  2009-06-10

2.  Influence of wave-front sampling in adaptive optics retinal imaging.

Authors:  Marie Laslandes; Matthias Salas; Christoph K Hitzenberger; Michael Pircher
Journal:  Biomed Opt Express       Date:  2017-01-24       Impact factor: 3.732

3.  Intersubject variability of foveal cone photoreceptor density in relation to eye length.

Authors:  Kaccie Y Li; Pavan Tiruveedhula; Austin Roorda
Journal:  Invest Ophthalmol Vis Sci       Date:  2010-08-04       Impact factor: 4.925

4.  Corneal functional optical zone under monocular and binocular assessment.

Authors:  Samuel Arba Mosquera; Diego de Ortueta; Shwetabh Verma
Journal:  Eye Vis (Lond)       Date:  2018-02-07
  4 in total

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