Predictive Factors Influencing the Evolution of Acquired Vitelliform Lesions in Intermediate Age-related Macular Degeneration Eyes.
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C. Wykoff | Jiwon Baek | S. Sadda | Sophiana Lindenberg | Louay Almidani | G. Corradetti | Damla Oncel | Deniz Oncel | K. B. Freund | David Sarraf | Ye He | Won Ki Lee | Alireza Mahmoudi | Mehdi Emamverdi | Alireza Farahani | Rouzbeh Abbasgholizadeh | Stanley M. Saju
[1] D. Sarraf,et al. Relationship Between Drusen Height and OCT Biomarkers of Atrophy in Non-Neovascular AMD , 2022, Investigative ophthalmology & visual science.
[2] C. Wykoff,et al. Optical Coherence Tomography Risk Factors for Development of Atrophy in Eyes with Intermediate Age-related Macular Degeneration. , 2022, Ophthalmology. Retina.
[3] J. Haines,et al. Risk Factors for Progression of Age-Related Macular Degeneration: Population-Based Amish Eye Study , 2022, Journal of clinical medicine.
[4] C. Curcio,et al. Histology and clinical lifecycle of acquired vitelliform lesion, a pathway to advanced age-related macular degeneration. , 2022, American journal of ophthalmology.
[5] S. Sivaprasad,et al. Incidence and risk factors for macular atrophy in Acquired Vitelliform Lesions. , 2021, Ophthalmology. Retina.
[6] S. Sivaprasad,et al. Venous overload choroidopathy: A hypothetical framework for central serous chorioretinopathy and allied disorders , 2021, Progress in Retinal and Eye Research.
[7] C. Curcio,et al. Imaging Features Associated with Progression to Geographic Atrophy in Age-Related Macular Degeneration: CAM Report 5. , 2020, Ophthalmology. Retina.
[8] S. Sadda,et al. Choriocapillaris flow deficit associated with intraretinal hyperreflective foci in intermediate age-related macular degeneration , 2020, Graefe's Archive for Clinical and Experimental Ophthalmology.
[9] David J. Wilson,et al. Consensus Nomenclature for Reporting Neovascular Age-Related Macular Degeneration Data: Consensus on Neovascular Age-Related Macular Degeneration Nomenclature Study Group. , 2019, Ophthalmology.
[10] C. Curcio,et al. Incomplete Retinal Pigment Epithelial and Outer Retinal Atrophy in Age-Related Macular Degeneration: Classification of Atrophy Meeting Report 4. , 2019, Ophthalmology.
[11] S. Sadda,et al. Choriocapillaris flow impairment predicts the development and enlargement of drusen , 2019, Graefe's Archive for Clinical and Experimental Ophthalmology.
[12] Luis de Sisternes,et al. Age-dependent Changes in the Macular Choriocapillaris of Normal Eyes Imaged With Swept-Source Optical Coherence Tomography Angiography. , 2019, American journal of ophthalmology.
[13] L. Yannuzzi,et al. EYES WITH SUBRETINAL DRUSENOID DEPOSITS AND NO DRUSEN: Progression of Macular Findings , 2019, Retina.
[14] Srinivas R Sadda,et al. Topographic distribution of choriocapillaris flow deficits in healthy eyes , 2018, PloS one.
[15] Glenn J Jaffe,et al. Consensus Definition for Atrophy Associated with Age-Related Macular Degeneration on OCT: Classification of Atrophy Report 3. , 2017, Ophthalmology.
[16] Glenn J Jaffe,et al. Imaging Protocols in Clinical Studies in Advanced Age-Related Macular Degeneration: Recommendations from Classification of Atrophy Consensus Meetings. , 2017, Ophthalmology.
[17] C. Curcio,et al. Clinical Characteristics, Choroidal Neovascularization, and Predictors of Visual Outcomes in Acquired Vitelliform Lesions. , 2016, American journal of ophthalmology.
[18] D. Rubin,et al. Fully Automated Prediction of Geographic Atrophy Growth Using Quantitative Spectral-Domain Optical Coherence Tomography Biomarkers. , 2016, Ophthalmology.
[19] Jesse J. Jung,et al. Intraretinal Hyperreflective Foci in Acquired Vitelliform Lesions of the Macula: Clinical and Histologic Study. , 2016, American journal of ophthalmology.
[20] C. Curcio,et al. Correlation of Type 1 Neovascularization Associated With Acquired Vitelliform Lesion in the Setting of Age-Related Macular Degeneration. , 2015, American journal of ophthalmology.
[21] I. Chowers,et al. Adult-onset foveomacular vitelliform dystrophy: A fresh perspective , 2015, Progress in Retinal and Eye Research.
[22] K. Freund,et al. Pachychoroid pigment epitheliopathy may masquerade as acute retinal pigment epitheliitis. , 2014, Investigative ophthalmology & visual science.
[23] R. T. Smith,et al. RETICULAR MACULAR DISEASE IS ASSOCIATED WITH MULTILOBULAR GEOGRAPHIC ATROPHY IN AGE-RELATED MACULAR DEGENERATION , 2013, Retina.
[24] K Bailey Freund,et al. PACHYCHOROID PIGMENT EPITHELIOPATHY , 2013, Retina.
[25] Usha Chakravarthy,et al. Clinical classification of age-related macular degeneration. , 2013, Ophthalmology.
[26] L. Yannuzzi,et al. ACQUIRED VITELLIFORM LESION ASSOCIATED WITH LARGE DRUSEN , 2012, Retina.
[27] E. Souied,et al. Natural course of adult-onset foveomacular vitelliform dystrophy: a spectral-domain optical coherence tomography analysis. , 2011, American journal of ophthalmology.
[28] William J Feuer,et al. Natural history of drusen morphology in age-related macular degeneration using spectral domain optical coherence tomography. , 2011, Ophthalmology.
[29] L. Yannuzzi,et al. ACQUIRED VITELLIFORM DETACHMENT IN PATIENTS WITH SUBRETINAL DRUSENOID DEPOSITS (RETICULAR PSEUDODRUSEN) , 2011, Retina.
[30] L. Yannuzzi,et al. ACQUIRED VITELLIFORM LESIONS: Correlation of Clinical Findings and Multiple Imaging Analyses , 2011, Retina.
[31] E. Souied,et al. High-resolution spectral domain optical coherence tomography features in adult onset foveomacular vitelliform dystrophy , 2010, British Journal of Ophthalmology.
[32] E. Souied,et al. Adult-onset foveomacular vitelliform dystrophy with OCT 3. , 2004, American journal of ophthalmology.
[33] M. Killingsworth,et al. Adult vitelliform macular degeneration: a clinicopathological study , 2003, Eye.
[34] D. M. Gass,et al. A clinicopathologic study of a peculiar foveomacular dystrophy. , 1974, Transactions of the American Ophthalmological Society.