Cuticular Drusen Associated Photoreceptor and RPE Optical Property Perturbation Revealed by Adaptive Optics Scanning Laser Ophthalmoscopy
Wang, X.; Hoshi, S.; Kadomoto, S.; Liu, R.; Ip, M.; Sarraf, D.; Sadda, S. R.; Zhang, Y.
Show abstract
PurposeTo characterize microscopic alteration of photoreceptors and RPE surrounding cuticular drusen in age-related macular degeneration (AMD) using multimodal imaging, including high resolution adaptive optics scanning laser ophthalmoscopy (AOSLO). MethodsEyes with early to intermediate AMD and predominantly cuticular drusen underwent color fundus photography, infrared reflectance, fundus autofluorescence, optical coherence tomography (OCT), and AOSLO. Cuticular drusen were identified using multimodal imaging and classified into three OCT-defined phenotypes. Cone photoreceptor reflectivity was assessed on AOSLO. A subset of eyes underwent longitudinal AOSLO and OCT imaging. ResultNineteen eyes from 12 subjects aged 70.3 {+/-} 5.8 years were studied. Six eyes had longitudinal follow-up imaging. A total of 3177 cuticular drusen were evaluated and classified into 3 types based on cross sectional OCT imaging. AOSLO revealed corresponding phenotype-dependent cone reflectivity alterations associated with the 3 types of cuticular drusen. Type 1: Maintained cone reflectivity overlying the drusen on a hyporeflective background. Type 2: Cone reflectivity loss overlying the cuticular drusen. Type 3: Cones are predominantly not visible over the cuticular drusen. Lesion diameters were 52.62 {+/-} 9.38 {micro}m (Type 1), 71.88 {+/-} 12.39 {micro}m (Type 2), and 124.72 {+/-} 20.94 {micro}m (Type 3). All lesions were accompanied by hypertransmission in the choroid on OCT. Longitudinal imaging showed that localized outer retinal reflectivity reduction on AOSLO preceded the detection of new cuticular drusen on OCT. ConclusionsCellular-resolution multimodal imaging demonstrates progressive, phenotype-specific disruption of the photoreceptor-RPE complex associated with cuticular drusen in AMD. Early AOSLO-detected reflectivity changes preceding OCT-visible lesions highlight the sensitivity of adaptive optics imaging for identifying early outer retinal alterations and for advancing understanding of the biogenesis of cuticular drusen.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Potential Structural Biomarkers in 3D Images Validated by the First Functional Biomarker for Early Age-Related Macular Degeneration - ALSTAR2 Baseline 98%
- Progressive dysmorphia of retinal pigment epithelium in age related macular degeneration revealed by fluorescence lifetime imaging 98%
- Longitudinal in vivo changes in radial peripapillary capillaries and optic nerve head structure in non-human primates with early experimental glaucoma 97%
Similar papers in this journal
- Reliability of retinal pathology quantification in age-related macular degeneration: Implications for clinical trials and machine learning applications 97%
- Photoreceptor outer segment reflectivity with ultrahigh resolution visible light optical coherence tomography in systemic hydroxychloroquine use 97%
- Advanced Retinal Imaging and Ocular Parameters of the Rhesus Macaque Eye 96%
Similar papers in this journal
- Foveolar drusen decrease fixation stability in presymptomatic AMD 95%
- Inner limiting Membrane Peel Extends In vivo Calcium Imaging of Retinal Ganglion Cell Activity Beyond the Fovea in Non-Human Primate 95%
- Robotic Visible-Light Optical Coherence Tomography Visualizes Segmental Schlemms Canal Anatomy and Segmental Pilocarpine Response 94%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.