• Title of article

    An Update on Choroidal Layer Segmentation Methods in Optical Coherence Tomography Images: a Review

  • Author/Authors

    Alizadeh Eghtedar ، Reza Department of Medical Bioengineering - School of Advanced Medical Sciences - Tabriz University of Medical Sciences , Esmaeili ، Mahdad Department of Medical Bioengineering - School of Advanced Medical Sciences - Tabriz University of Medical Sciences , Peyman ، Alireza Department of Ophthalmology - Isfahan University of Medical Sciences , Akhlaghi ، Mohammadreza Department of Ophthalmology - Isfahan University of Medical Sciences , Rasta ، Hossein Department of Medical Bioengineering, Department of Medical Physics - School of Advanced Medical Sciences, School of Medicine - Tabriz University of Medical Sciences

  • From page
    1
  • To page
    20
  • Abstract
    Choroid is one of the structural layers, playing a significant role in physiology of the eye and lying between the sclera and the retina. The segmentation of this layer could guide ophthalmologists in diagnosing most of the eye pathologies such as choroidal tumors and polypoidal choroidal vasculopathy. High signal- to-noise ratio and high speed imaging in Spectral-Domain Optical Coherence Tomography (SD-OCT) make choroidal imaging feasible. Several variables such as pre- operative axial length (AXL), time of day and age affect thickness of the choroidal vascularization and should be considered for segmentation of this layer. These days most of the eye specialists manually segment the choroidal layer which is time-consuming, tiresome and dependent on human errors. To overcome these difficulties, some studies have introduced different automatic choroidal segmentation methods. In this paper, we have conducted a comprehensive review on existing recently published methods for automatic choroidal segmentation algorithms.
  • Keywords
    Choroid , Optical Coherence Tomography (OCT) , Retina , Ophthalmology
  • Journal title
    Journal of Biomedical Physics and Engineering
  • Journal title
    Journal of Biomedical Physics and Engineering
  • Record number

    2706952