Correlation between optical coherence tomography and fluorescein angiography findings in diabetic macular edema. 2007

Tomohiro Otani, and Shoji Kishi
Department of Ophthalmology, Gunma University School of Medicine, Maebashi, Japan. otanito@showa.gunma-u.ac.jp

OBJECTIVE To report the relationship between the findings of third-generation optical coherence tomography (OCT) and fluorescein angiography (FA) in eyes with diabetic macular edema (DME). METHODS Small case series. METHODS Four eyes with DME. METHODS We compared findings from late-phase FA with corresponding cross-sectional OCT images using 5-mm-long horizontal and vertical scans. METHODS Fluorescein angiography and OCT findings in DME. RESULTS Fluorescein angiography showed dye pooling within the cystic spaces with a petalloid pattern in the foveal area in all eyes; 3 eyes had cystic spaces primarily in the outer plexiform layer (OPL) on OCT. In 16 perifoveal areas in 4 eyes, FA showed hyperfluorescence with a honeycomb pattern in 7 areas, petalloid pattern in 3, and diffuse pattern in 3. The remaining 3 perifoveal areas had no hyperfluorescence. Optical coherence tomography showed that the perifoveal areas with a honeycomb pattern of hyperfluorescence had not only swelling of the OPL but also cystoid spaces located in the inner nuclear layer (INL). The perifoveal areas with no honeycomb pattern but petalloid or diffuse hyperfluorescence had only retinal swelling of the OPL. In the remaining 3 perifoveal areas without hyperfluorescence, OCT showed almost normal retinal structures. CONCLUSIONS Diabetic macular edema typically showed 2 patterns of dye pooling on late-phase FA (i.e., petalloid in the fovea and honeycomb in the perifoveal area). The dye pooling corresponded to large cystic spaces in the OPL, and the honeycomb pattern to small cystic spaces in the INL.

UI MeSH Term Description Entries
D008269 Macular Edema Fluid accumulation in the outer layer of the MACULA LUTEA that results from intraocular or systemic insults. It may develop in a diffuse pattern where the macula appears thickened or it may acquire the characteristic petaloid appearance referred to as cystoid macular edema. Although macular edema may be associated with various underlying conditions, it is most commonly seen following intraocular surgery, venous occlusive disease, DIABETIC RETINOPATHY, and posterior segment inflammatory disease. (From Survey of Ophthalmology 2004; 49(5) 470-90) Central Retinal Edema, Cystoid,Cystoid Macular Edema,Macular Edema, Cystoid,Cystoid Macular Dystrophy,Cystoid Macular Edema, Postoperative,Irvine-Gass Syndrome,Macular Dystrophy, Dominant Cystoid,Edema, Cystoid Macular,Edema, Macular,Irvine Gass Syndrome,Syndrome, Irvine-Gass
D008297 Male Males
D008875 Middle Aged An adult aged 45 - 64 years. Middle Age
D012160 Retina The ten-layered nervous tissue membrane of the eye. It is continuous with the OPTIC NERVE and receives images of external objects and transmits visual impulses to the brain. Its outer surface is in contact with the CHOROID and the inner surface with the VITREOUS BODY. The outer-most layer is pigmented, whereas the inner nine layers are transparent. Ora Serrata
D003924 Diabetes Mellitus, Type 2 A subclass of DIABETES MELLITUS that is not INSULIN-responsive or dependent (NIDDM). It is characterized initially by INSULIN RESISTANCE and HYPERINSULINEMIA; and eventually by GLUCOSE INTOLERANCE; HYPERGLYCEMIA; and overt diabetes. Type II diabetes mellitus is no longer considered a disease exclusively found in adults. Patients seldom develop KETOSIS but often exhibit OBESITY. Diabetes Mellitus, Adult-Onset,Diabetes Mellitus, Ketosis-Resistant,Diabetes Mellitus, Maturity-Onset,Diabetes Mellitus, Non-Insulin-Dependent,Diabetes Mellitus, Slow-Onset,Diabetes Mellitus, Stable,MODY,Maturity-Onset Diabetes Mellitus,NIDDM,Diabetes Mellitus, Non Insulin Dependent,Diabetes Mellitus, Noninsulin Dependent,Diabetes Mellitus, Noninsulin-Dependent,Diabetes Mellitus, Type II,Maturity-Onset Diabetes,Noninsulin-Dependent Diabetes Mellitus,Type 2 Diabetes,Type 2 Diabetes Mellitus,Adult-Onset Diabetes Mellitus,Diabetes Mellitus, Adult Onset,Diabetes Mellitus, Ketosis Resistant,Diabetes Mellitus, Maturity Onset,Diabetes Mellitus, Slow Onset,Diabetes, Maturity-Onset,Diabetes, Type 2,Ketosis-Resistant Diabetes Mellitus,Maturity Onset Diabetes,Maturity Onset Diabetes Mellitus,Non-Insulin-Dependent Diabetes Mellitus,Noninsulin Dependent Diabetes Mellitus,Slow-Onset Diabetes Mellitus,Stable Diabetes Mellitus
D003930 Diabetic Retinopathy Disease of the RETINA as a complication of DIABETES MELLITUS. It is characterized by the progressive microvascular complications, such as ANEURYSM, interretinal EDEMA, and intraocular PATHOLOGIC NEOVASCULARIZATION. Diabetic Retinopathies,Retinopathies, Diabetic,Retinopathy, Diabetic
D005451 Fluorescein Angiography Visualization of a vascular system after intravenous injection of a fluorescein solution. The images may be photographed or televised. It is used especially in studying the retinal and uveal vasculature. Fluorescence Angiography,Fundus Fluorescence Photography,Angiography, Fluorescein,Angiography, Fluorescence,Fluorescence Photography, Fundus,Photography, Fundus Fluorescence
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000328 Adult A person having attained full growth or maturity. Adults are of 19 through 44 years of age. For a person between 19 and 24 years of age, YOUNG ADULT is available. Adults
D041623 Tomography, Optical Coherence An imaging method using LASERS that is used for mapping subsurface structure. When a reflective site in the sample is at the same optical path length (coherence) as the reference mirror, the detector observes interference fringes. OCT Tomography,Optical Coherence Tomography,Coherence Tomography, Optical,Tomography, OCT

Related Publications

Tomohiro Otani, and Shoji Kishi
July 2006, Investigative ophthalmology & visual science,
Tomohiro Otani, and Shoji Kishi
August 2012, American journal of ophthalmology,
Tomohiro Otani, and Shoji Kishi
December 2016, Ocular immunology and inflammation,
Copied contents to your clipboard!