Axial length and cone density as assessed with adaptive optics in myopia

Aim: To assess the variations in cone mosaic in myopia and its correlation with axial length (AL). Subjects and Methods: Twenty-five healthy myopic volunteers underwent assessment of photoreceptors using adaptive optics retinal camera at 2° and 3° from the foveal center in four quadrants superior, i...

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Published inIndian journal of ophthalmology Vol. 63; no. 5; pp. 423 - 426
Main Authors Dabir, Supriya, Mangalesh, Shwetha, Schouten, Jan, Berendschot, Tos, Kurian, Mathew, Kumar, Anupama, Yadav, Naresh, Shetty, Rohit
Format Journal Article
LanguageEnglish
Published India Medknow Publications 01.05.2015
Medknow Publications and Media Pvt. Ltd
Medknow Publications & Media Pvt. Ltd
Medknow Publications & Media Pvt Ltd
Wolters Kluwer Medknow Publications
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Online AccessGet full text
ISSN0301-4738
1998-3689
1998-3689
DOI10.4103/0301-4738.159876

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Abstract Aim: To assess the variations in cone mosaic in myopia and its correlation with axial length (AL). Subjects and Methods: Twenty-five healthy myopic volunteers underwent assessment of photoreceptors using adaptive optics retinal camera at 2° and 3° from the foveal center in four quadrants superior, inferior, temporal and nasal. Data was analyzed using SPSS version 17 (IBM). Multivariable regression analysis was conducted to study the relation between cone density and AL, quadrant around the fovea and eccentricity from the fovea. Results: The mean cone density was significantly lower as the eccentricity increased from 2° from the fovea to 3° (18,560 ± 5455-16,404 ± 4494/mm 2 respectively). There was also a statistically significant difference between four quadrants around the fovea. The correlation of cone density and spacing with AL showed that there was a significant inverse relation of AL with the cone density. Conclusion: In myopic patients with good visual acuity cone density around the fovea depends on the quadrant, distance from the fovea as well as the AL. The strength of the relation of AL with cone density depends on the quadrant and distance.
AbstractList To assess the variations in cone mosaic in myopia and its correlation with axial length (AL). Twenty-five healthy myopic volunteers underwent assessment of photoreceptors using adaptive optics retinal camera at 2° and 3° from the foveal center in four quadrants superior, inferior, temporal and nasal. Data was analyzed using SPSS version 17 (IBM). Multivariable regression analysis was conducted to study the relation between cone density and AL, quadrant around the fovea and eccentricity from the fovea. The mean cone density was significantly lower as the eccentricity increased from 2° from the fovea to 3° (18,560 ± 5455-16,404 ± 4494/mm 2 respectively). There was also a statistically significant difference between four quadrants around the fovea. The correlation of cone density and spacing with AL showed that there was a significant inverse relation of AL with the cone density. In myopic patients with good visual acuity cone density around the fovea depends on the quadrant, distance from the fovea as well as the AL. The strength of the relation of AL with cone density depends on the quadrant and distance.
Aim: To assess the variations in cone mosaic in myopia and its correlation with axial length (AL). Subjects and Methods: Twenty-five healthy myopic volunteers underwent assessment of photoreceptors using adaptive optics retinal camera at 2° and 3° from the foveal center in four quadrants superior, inferior, temporal and nasal. Data was analyzed using SPSS version 17 (IBM). Multivariable regression analysis was conducted to study the relation between cone density and AL, quadrant around the fovea and eccentricity from the fovea. Results: The mean cone density was significantly lower as the eccentricity increased from 2° from the fovea to 3° (18,560 ± 5455-16,404 ± 4494/mm 2 respectively). There was also a statistically significant difference between four quadrants around the fovea. The correlation of cone density and spacing with AL showed that there was a significant inverse relation of AL with the cone density. Conclusion: In myopic patients with good visual acuity cone density around the fovea depends on the quadrant, distance from the fovea as well as the AL. The strength of the relation of AL with cone density depends on the quadrant and distance.
To assess the variations in cone mosaic in myopia and its correlation with axial length (AL).AIMTo assess the variations in cone mosaic in myopia and its correlation with axial length (AL).Twenty-five healthy myopic volunteers underwent assessment of photoreceptors using adaptive optics retinal camera at 2° and 3° from the foveal center in four quadrants superior, inferior, temporal and nasal. Data was analyzed using SPSS version 17 (IBM). Multivariable regression analysis was conducted to study the relation between cone density and AL, quadrant around the fovea and eccentricity from the fovea.SUBJECTS AND METHODSTwenty-five healthy myopic volunteers underwent assessment of photoreceptors using adaptive optics retinal camera at 2° and 3° from the foveal center in four quadrants superior, inferior, temporal and nasal. Data was analyzed using SPSS version 17 (IBM). Multivariable regression analysis was conducted to study the relation between cone density and AL, quadrant around the fovea and eccentricity from the fovea.The mean cone density was significantly lower as the eccentricity increased from 2° from the fovea to 3° (18,560 ± 5455-16,404 ± 4494/mm 2 respectively). There was also a statistically significant difference between four quadrants around the fovea. The correlation of cone density and spacing with AL showed that there was a significant inverse relation of AL with the cone density.RESULTSThe mean cone density was significantly lower as the eccentricity increased from 2° from the fovea to 3° (18,560 ± 5455-16,404 ± 4494/mm 2 respectively). There was also a statistically significant difference between four quadrants around the fovea. The correlation of cone density and spacing with AL showed that there was a significant inverse relation of AL with the cone density.In myopic patients with good visual acuity cone density around the fovea depends on the quadrant, distance from the fovea as well as the AL. The strength of the relation of AL with cone density depends on the quadrant and distance.CONCLUSIONIn myopic patients with good visual acuity cone density around the fovea depends on the quadrant, distance from the fovea as well as the AL. The strength of the relation of AL with cone density depends on the quadrant and distance.
Aim: To assess the variations in cone mosaic in myopia and its correlation with axial length (AL). Subjects and Methods: Twenty-five healthy myopic volunteers underwent assessment of photoreceptors using adaptive optics retinal camera at 2 and 3 from the foveal center in four quadrants superior, inferior, temporal and nasal. Data was analyzed using SPSS version 17 (IBM). Multivariable regression analysis was conducted to study the relation between cone density and AL, quadrant around the fovea and eccentricity from the fovea. Results: The mean cone density was significantly lower as the eccentricity increased from 2 from the fovea to 3 (18,560 +- 5455-16,404 +- 4494/mm 2 respectively). There was also a statistically significant difference between four quadrants around the fovea. The correlation of cone density and spacing with AL showed that there was a significant inverse relation of AL with the cone density. Conclusion: In myopic patients with good visual acuity cone density around the fovea depends on the quadrant, distance from the fovea as well as the AL. The strength of the relation of AL with cone density depends on the quadrant and distance.
Audience Professional
Author Kurian, Mathew
Yadav, Naresh
Shetty, Rohit
Kumar, Anupama
Schouten, Jan
Mangalesh, Shwetha
Dabir, Supriya
Berendschot, Tos
AuthorAffiliation 2 Department of Cataract and Refractive Surgery, Narayana Nethralaya, Bengaluru, Karnataka, India
Department of Retina, Narayana Nethralaya, Bengaluru, Karnataka, India
1 Department of Ophthalmology, Maastricht University, Maastricht, The Netherlands
3 Department of Cornea and Refractive Surgery, Narayana Nethralaya, Bengaluru, Karnataka, India
AuthorAffiliation_xml – name: Department of Retina, Narayana Nethralaya, Bengaluru, Karnataka, India
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BackLink https://www.ncbi.nlm.nih.gov/pubmed/26139804$$D View this record in MEDLINE/PubMed
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Issue 5
Keywords myopia
Adaptive optics
axial length
cone density
Language English
License This is an open-access article distributed under the terms of the Creative Commons Attribution-Noncommercial-Share Alike 3.0 Unported, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
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Snippet Aim: To assess the variations in cone mosaic in myopia and its correlation with axial length (AL). Subjects and Methods: Twenty-five healthy myopic volunteers...
To assess the variations in cone mosaic in myopia and its correlation with axial length (AL). Twenty-five healthy myopic volunteers underwent assessment of...
To assess the variations in cone mosaic in myopia and its correlation with axial length (AL).AIMTo assess the variations in cone mosaic in myopia and its...
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SubjectTerms Adaptive optics
Adult
Age-related macular degeneration
axial length
Axial Length, Eye - pathology
Cell Count
Central reading center
Choroid
Choroidal imaging
Choroidal neovascularization
choroidal thickness
Community
Computer industry
cone density
Cystoid macular edema
dexamethasone implant
Diagnosis
digital imaging
en-face optical coherence tomography
enhanced depth imaging technique
external limiting membrane
Female
Fovea Centralis - pathology
Fundus autofluorescence
Humans
idiopathic juxtafoveal telangiectasis
juxtafoveal retinal telangiectasia
Karnataka Internet-assisted Diagnosis of Retinopathy of Prematurity
lipofuscin
lutein
macular edema
macular pigment
macular telangiectasia
Male
Mathematical models
Medical imaging
Microscope-integrated optical coherence tomography
Myopia
Myopia - pathology
Müller cells
optical coherence tomography
Optics and Photonics
Ozurdex
parafoveal telangiectasis
Patients
perifoveal telangiectasis
Photoreceptors
polypoidal choroidal vasculopathy
randomized controlled trial
RESCAN
Retina
retinal angiomatous proliferation
Retinal Cone Photoreceptor Cells - pathology
retinal dystrophies
retinal imaging
retinal telangiectasis
retinopathy of prematurity
serous retinal detachment
spectral domain optical coherence tomography
standard operating procedure
Studies
subretinal neovascularization
swept source optical coherence tomography
Symposium - Retinochoroidal Imaging
telemedicine
Tomography, Optical Coherence - instrumentation
universal screening
uveitis
vitreoretinal surgery
Young Adult
zeaxanthin
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Title Axial length and cone density as assessed with adaptive optics in myopia
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Volume 63
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