Association of clinical, instrumental and molecular genetic predictors with the risk of development and tumor progression of melanocytic intraocular neoplasms
Author:
Affiliation:
1. Helmholtz National Medical Research Center of Eye Diseases
2. Institute of General Pathology and Pathophysiology
Publisher
Real Time, Ltd.
Subject
Ophthalmology
Reference25 articles.
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2. Myakoshina E.B. Small choroidal melanoma and pseudomelanomas: methods of differential diagnostics. Part 1. Ophthalmoscopy. Russian ophthalmological journal. 2019; 12 (4): 99–108 (In Russian). doi: 10.21516/2072-0076-2019-12-4-99-108
3. Shields C.L., Dalvin L.A., Ancona-Lezama D., et al. Choroidal nevus imaging features in 3806 cases and risk factors transformation into melanoma in 2355: The 2020 Taylor R. Smith and Victor T. Curtin Lecture. Retina. 2019; 39 (10): 1840–51. doi: 10.1097/IAE.0000000000002440
4. Vader M.J.C., Madigan M.C., Versluis M., et al. GNAQ and GNA11 mutations and downstream YAP activation in choroidal nevi. Br. Journ. of Cancer. 2017; 117 (6): 884–7. doi:10.1038/bjc.2017.259
5. Harbour J.W., Paez-Escamilla M., Cai L., et al. Are risk factors for growth of choroidal nevi associated with malignant transformation? Assessment with a validated genomic biomarker. Am. Journ. of Ophthalmology. 2019; 197: 168–79. doi:10.1016/j.ajo.2018.08.045
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1. Circumscribed choroidal hemangioma and non-pigmented choroidal melanoma: clinical, instrumental and molecular genetic features;Russian Annals of Ophthalmology;2024
2. Minimally invasive differential diagnosis of melanocytic intraocular neoplasms;Russian Ophthalmological Journal;2023-12-29
3. Association of BARD1 and BRIP1 Gene Polymorphisms with the Risk of Uveal Melanoma;Bulletin of Experimental Biology and Medicine;2023-07
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