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EN FACE IMAGING OF OUTER RETINAL PATHOLOGY AFTER RETINAL DETACHMENT
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Purpose:
To explore the potentials of multicolor (MC) confocal scanning laser ophthalmoscopy (cSLO) to detect structural retinal pathology after macula-off rhegmatogenous retinal detachment (RRD) and to describe their appearances.
Methods:
Thirty MC cSLO images of 30 eyes after RRD repair were prospectively studied for the presence of RRD-related pathology. All MC cSLO findings were verified using swept source optical coherence tomography. Positive percent agreements were calculated using swept source optical coherence tomography as reference.
Results:
Eight RRD-related structural pathologies were identified and characterized: ellipsoid zone (EZ) disruption, foveal EZ rosette, outer retinal fold, retinal detachment line, subretinal fluid blebs, subretinal fluid layer, retinal striae, and intraretinal cysts. Multicolor cSLO positive percent agreements were as follows: EZ disruption: 79%, foveal EZ rosette: 73%, outer retinal fold: 67%, retinal detachment line: 84%, subretinal fluid blebs: 0.70%, subretinal fluid layer: 50%, intraretinal cysts: 60%, and retinal striae: 100%.
Conclusion:
En face MC cSLO imaging detected and delineated RRD-related structural pathology in high agreement with cross-sectional swept source optical coherence tomography and can supplement optical coherence tomography in the documentation and monitoring of outer retinal remodeling processes after macula-off RRD. Foveal EZ rosette is a new finding of the foveal EZ.
Ovid Technologies (Wolters Kluwer Health)
Title: EN FACE IMAGING OF OUTER RETINAL PATHOLOGY AFTER RETINAL DETACHMENT
Description:
Purpose:
To explore the potentials of multicolor (MC) confocal scanning laser ophthalmoscopy (cSLO) to detect structural retinal pathology after macula-off rhegmatogenous retinal detachment (RRD) and to describe their appearances.
Methods:
Thirty MC cSLO images of 30 eyes after RRD repair were prospectively studied for the presence of RRD-related pathology.
All MC cSLO findings were verified using swept source optical coherence tomography.
Positive percent agreements were calculated using swept source optical coherence tomography as reference.
Results:
Eight RRD-related structural pathologies were identified and characterized: ellipsoid zone (EZ) disruption, foveal EZ rosette, outer retinal fold, retinal detachment line, subretinal fluid blebs, subretinal fluid layer, retinal striae, and intraretinal cysts.
Multicolor cSLO positive percent agreements were as follows: EZ disruption: 79%, foveal EZ rosette: 73%, outer retinal fold: 67%, retinal detachment line: 84%, subretinal fluid blebs: 0.
70%, subretinal fluid layer: 50%, intraretinal cysts: 60%, and retinal striae: 100%.
Conclusion:
En face MC cSLO imaging detected and delineated RRD-related structural pathology in high agreement with cross-sectional swept source optical coherence tomography and can supplement optical coherence tomography in the documentation and monitoring of outer retinal remodeling processes after macula-off RRD.
Foveal EZ rosette is a new finding of the foveal EZ.
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