Analysis of Normal Peripapillary Choroidal Thickness via Spectral Domain Optical Coherence Tomography

Purpose To analyze the normal peripapillary choroidal thickness utilizing a commercial spectral domain optical coherence tomography (OCT) device and determine the intergrader reproducibility of this method. Design Retrospective, noncomparative, noninterventional case series. Participants Thirty...

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Main Authors: Ho, Joseph, Branchini, Lauren, Regatieri, Caio, Krishnan, Chandrasekharan, Fujimoto, James G., Duker, Jay S.
Other Authors: Massachusetts Institute of Technology. Department of Electrical Engineering and Computer Science
Format: Article
Language:en_US
Published: Elsevier 2015
Online Access:http://hdl.handle.net/1721.1/100403
https://orcid.org/0000-0002-0828-4357
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author Ho, Joseph
Branchini, Lauren
Regatieri, Caio
Krishnan, Chandrasekharan
Fujimoto, James G.
Duker, Jay S.
author2 Massachusetts Institute of Technology. Department of Electrical Engineering and Computer Science
author_facet Massachusetts Institute of Technology. Department of Electrical Engineering and Computer Science
Ho, Joseph
Branchini, Lauren
Regatieri, Caio
Krishnan, Chandrasekharan
Fujimoto, James G.
Duker, Jay S.
author_sort Ho, Joseph
collection MIT
description Purpose To analyze the normal peripapillary choroidal thickness utilizing a commercial spectral domain optical coherence tomography (OCT) device and determine the intergrader reproducibility of this method. Design Retrospective, noncomparative, noninterventional case series. Participants Thirty-six eyes of 36 normal patients seen at the New England Eye Center between April and September 2010. Methods All patients underwent high-definition scanning with the Cirrus HD-OCT. Two raster scans were obtained per eye, a horizontal and a vertical scan, both of which were centered at the optic nerve. Two independent graders individually measured the choroidal thickness. Choroidal thickness was measured from the posterior edge of the retinal pigment epithelium to the choroid–scleral junction at 500-μm intervals away from the optic nerve in the superior, inferior, nasal, and temporal quadrants. Statistical analysis was conducted to compare mean choroidal thicknesses. Intergrader reproducibility was assessed by intraclass correlation coefficient and Pearson's correlation coefficient. Average choroidal thickness in each quadrant was compared with retinal nerve fiber layer (RNFL) thickness in their respective quadrants. Main Outcome Measures Peripapillary choroidal thickness, intraclass coefficient, and Pearson's correlation coefficient. Results The peripapillary choroid in the inferior quadrant was significantly thinner compared with all other quadrants (P<0.001). None of the other quadrants were significantly different from each other in terms of thickness. The inferior peripapillary choroid was significantly thinner compared with all other quadrants at all distances measured away from the optic nerve (P<0.001). Generally, the peripapillary choroid increases in thickness the farther it was away from the optic nerve and eventually approaching a plateau. The intraclass correlation coefficient ranged from 0.62 to 0.93 and Pearson's correlation coefficient ranged from 0.74 to 0.95 (P<0.001). Neither RNFL thickness nor average age was significantly correlated with average choroidal thickness. Conclusions Manual segmentation of the peripapillary choroidal thickness is reproducible between graders, suggesting that this method is accurate. The inferior peripapillary choroid was significantly thinner than all other quadrants (P<0.001).
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spelling mit-1721.1/1004032022-10-01T14:48:22Z Analysis of Normal Peripapillary Choroidal Thickness via Spectral Domain Optical Coherence Tomography Ho, Joseph Branchini, Lauren Regatieri, Caio Krishnan, Chandrasekharan Fujimoto, James G. Duker, Jay S. Massachusetts Institute of Technology. Department of Electrical Engineering and Computer Science Massachusetts Institute of Technology. Research Laboratory of Electronics Fujimoto, James G. Purpose To analyze the normal peripapillary choroidal thickness utilizing a commercial spectral domain optical coherence tomography (OCT) device and determine the intergrader reproducibility of this method. Design Retrospective, noncomparative, noninterventional case series. Participants Thirty-six eyes of 36 normal patients seen at the New England Eye Center between April and September 2010. Methods All patients underwent high-definition scanning with the Cirrus HD-OCT. Two raster scans were obtained per eye, a horizontal and a vertical scan, both of which were centered at the optic nerve. Two independent graders individually measured the choroidal thickness. Choroidal thickness was measured from the posterior edge of the retinal pigment epithelium to the choroid–scleral junction at 500-μm intervals away from the optic nerve in the superior, inferior, nasal, and temporal quadrants. Statistical analysis was conducted to compare mean choroidal thicknesses. Intergrader reproducibility was assessed by intraclass correlation coefficient and Pearson's correlation coefficient. Average choroidal thickness in each quadrant was compared with retinal nerve fiber layer (RNFL) thickness in their respective quadrants. Main Outcome Measures Peripapillary choroidal thickness, intraclass coefficient, and Pearson's correlation coefficient. Results The peripapillary choroid in the inferior quadrant was significantly thinner compared with all other quadrants (P<0.001). None of the other quadrants were significantly different from each other in terms of thickness. The inferior peripapillary choroid was significantly thinner compared with all other quadrants at all distances measured away from the optic nerve (P<0.001). Generally, the peripapillary choroid increases in thickness the farther it was away from the optic nerve and eventually approaching a plateau. The intraclass correlation coefficient ranged from 0.62 to 0.93 and Pearson's correlation coefficient ranged from 0.74 to 0.95 (P<0.001). Neither RNFL thickness nor average age was significantly correlated with average choroidal thickness. Conclusions Manual segmentation of the peripapillary choroidal thickness is reproducible between graders, suggesting that this method is accurate. The inferior peripapillary choroid was significantly thinner than all other quadrants (P<0.001). Research to Prevent Blindness, Inc. (United States) National Institutes of Health (U.S.) (RO1-EY11289-24) National Institutes of Health (U.S.) (R01-EY13178-10) National Institutes of Health (U.S.) (R01-EY013516-07) United States. Air Force Office of Scientific Research (FA9550-07-1-0101) United States. Air Force Office of Scientific Research (FA9550-07-1-0014) 2015-12-17T01:07:40Z 2015-12-17T01:07:40Z 2011-06 2011-02 Article http://purl.org/eprint/type/JournalArticle 01616420 http://hdl.handle.net/1721.1/100403 Ho, Joseph, Lauren Branchini, Caio Regatieri, Chandrasekharan Krishnan, James G. Fujimoto, and Jay S. Duker. “Analysis of Normal Peripapillary Choroidal Thickness via Spectral Domain Optical Coherence Tomography.” Ophthalmology 118, no. 10 (October 2011): 2001–2007. https://orcid.org/0000-0002-0828-4357 en_US http://dx.doi.org/10.1016/j.ophtha.2011.02.049 Ophthalmology Creative Commons Attribution http://creativecommons.org/licenses/by-nc-nd/4.0/ application/pdf Elsevier PMC
spellingShingle Ho, Joseph
Branchini, Lauren
Regatieri, Caio
Krishnan, Chandrasekharan
Fujimoto, James G.
Duker, Jay S.
Analysis of Normal Peripapillary Choroidal Thickness via Spectral Domain Optical Coherence Tomography
title Analysis of Normal Peripapillary Choroidal Thickness via Spectral Domain Optical Coherence Tomography
title_full Analysis of Normal Peripapillary Choroidal Thickness via Spectral Domain Optical Coherence Tomography
title_fullStr Analysis of Normal Peripapillary Choroidal Thickness via Spectral Domain Optical Coherence Tomography
title_full_unstemmed Analysis of Normal Peripapillary Choroidal Thickness via Spectral Domain Optical Coherence Tomography
title_short Analysis of Normal Peripapillary Choroidal Thickness via Spectral Domain Optical Coherence Tomography
title_sort analysis of normal peripapillary choroidal thickness via spectral domain optical coherence tomography
url http://hdl.handle.net/1721.1/100403
https://orcid.org/0000-0002-0828-4357
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