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Journal Abstract Search
174 related items for PubMed ID: 31047383
41. Comparison of ultrahigh- and standard-resolution optical coherence tomography for imaging macular pathology. Ko TH, Fujimoto JG, Schuman JS, Paunescu LA, Kowalevicz AM, Hartl I, Drexler W, Wollstein G, Ishikawa H, Duker JS. Ophthalmology; 2005 Nov; 112(11):1922.e1-15. PubMed ID: 16183127 [Abstract] [Full Text] [Related]
42. Retinal Reflectivity Measurement for Cone Impairment Estimation and Visual Assessment After Diabetic Macular Edema Resolution (RECOVER-DME). Guyon B, Elphege E, Flores M, Gauthier AS, Delbosc B, Saleh M. Invest Ophthalmol Vis Sci; 2017 Dec 01; 58(14):6241-6247. PubMed ID: 29228252 [Abstract] [Full Text] [Related]
44. Congenital hypertrophy of the retinal pigment epithelium: enhanced-depth imaging optical coherence tomography in 18 cases. Fung AT, Pellegrini M, Shields CL. Ophthalmology; 2014 Jan 01; 121(1):251-256. PubMed ID: 24126031 [Abstract] [Full Text] [Related]
45. CHANGES OF OUTER RETINAL THICKNESS WITH INCREASING AGE IN NORMAL EYES AND IN NORMAL FELLOW EYES OF PATIENTS WITH UNILATERAL AGE-RELATED MACULAR DEGENERATION. Kenmochi J, Ito Y, Terasaki H. Retina; 2017 Jan 01; 37(1):47-52. PubMed ID: 27347643 [Abstract] [Full Text] [Related]
46. Intraretinal hyperreflective foci on spectral-domain optical coherence tomographic images of patients with retinitis pigmentosa. Kuroda M, Hirami Y, Hata M, Mandai M, Takahashi M, Kurimoto Y. Clin Ophthalmol; 2014 Jan 01; 8():435-40. PubMed ID: 24591813 [Abstract] [Full Text] [Related]
47. Outer retinal corrugations in age-related macular degeneration. Ooto S, Vongkulsiri S, Sato T, Suzuki M, Curcio CA, Spaide RF. JAMA Ophthalmol; 2014 Jul 01; 132(7):806-13. PubMed ID: 24801396 [Abstract] [Full Text] [Related]
48. Significant Relationship of Visual Field Sensitivity in Central 10° to Thickness of Retinal Layers in Retinitis Pigmentosa. Sayo A, Ueno S, Kominami T, Okado S, Inooka D, Komori S, Terasaki H. Invest Ophthalmol Vis Sci; 2018 Jul 02; 59(8):3469-3475. PubMed ID: 30025100 [Abstract] [Full Text] [Related]
49. CLASSIFICATION AND QUANTITATIVE ANALYSIS OF GEOGRAPHIC ATROPHY JUNCTIONAL ZONE USING SPECTRAL DOMAIN OPTICAL COHERENCE TOMOGRAPHY. Qu J, Velaga SB, Hariri AH, Nittala MG, Sadda S. Retina; 2018 Aug 02; 38(8):1456-1463. PubMed ID: 28834947 [Abstract] [Full Text] [Related]
50. OUTER RETINAL TUBULATION IN ADVANCED AGE-RELATED MACULAR DEGENERATION: Optical Coherence Tomographic Findings Correspond to Histology. Schaal KB, Freund KB, Litts KM, Zhang Y, Messinger JD, Curcio CA. Retina; 2015 Jul 02; 35(7):1339-50. PubMed ID: 25635579 [Abstract] [Full Text] [Related]
51. High-resolution spectral domain optical coherence tomography and fundus autofluorescence correlation in tubercular serpiginouslike choroiditis. Bansal R, Kulkarni P, Gupta A, Gupta V, Dogra MR. J Ophthalmic Inflamm Infect; 2011 Dec 02; 1(4):157-63. PubMed ID: 21847595 [Abstract] [Full Text] [Related]
52. A systematic comparison of spectral-domain optical coherence tomography and fundus autofluorescence in patients with geographic atrophy. Sayegh RG, Simader C, Scheschy U, Montuoro A, Kiss C, Sacu S, Kreil DP, Prünte C, Schmidt-Erfurth U. Ophthalmology; 2011 Sep 02; 118(9):1844-51. PubMed ID: 21496928 [Abstract] [Full Text] [Related]
53. ACUTE ZONAL OCCULT OUTER RETINOPATHY: Structural and Functional Analysis Across the Transition Zone Between Healthy and Diseased Retina. Duncker T, Lee W, Jiang F, Ramachandran R, Hood DC, Tsang SH, Sparrow JR, Greenstein VC. Retina; 2018 Jan 02; 38(1):118-127. PubMed ID: 28590963 [Abstract] [Full Text] [Related]
55. Performance of Deep Learning Models in Automatic Measurement of Ellipsoid Zone Area on Baseline Optical Coherence Tomography (OCT) Images From the Rate of Progression of USH2A-Related Retinal Degeneration (RUSH2A) Study. Wang YZ, Birch DG. Front Med (Lausanne); 2022 Jan 02; 9():932498. PubMed ID: 35865175 [Abstract] [Full Text] [Related]