Below are the most recent publications written about "Retinal Ganglion Cells" by people in Profiles.
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Alexopoulos P, Fernandes AG, Ghassabi Z, Zambrano R, Vellappally A, Shemuelian E, Lee T, Hu J, Burgos-Rodriguez A, Martinez MI, Schuman JS, Melin AD, Higham JP, Danias J, Wollstein G. Lamina Cribrosa Microstructure in Nonhuman Primates With Naturally Occurring Peripapillary Retinal Nerve Fiber Layer Thinning. Transl Vis Sci Technol. 2024 Sep 03; 13(9):23.
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Bowd C, Belghith A, Rezapour J, Jonas JB, Hyman L, Weinreb RN, Zangwill LM. Wide-Field Optical Coherence Tomography Imaging Improves Rate of Change Detection in Progressing Glaucomatous Eyes Compared With Standard-Field Imaging. Invest Ophthalmol Vis Sci. 2024 Jul 01; 65(8):18.
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Khreish M, Schuman JS, Lee T, Ghassabi Z, Zambrano R, Hu J, Ishikawa H, Wollstein G, Lavinsky F. Peripapillary Atrophy Area as an Indicator of Glaucomatous Structural and Functional Progression. Transl Vis Sci Technol. 2024 Mar 01; 13(3):1.
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Ma D, Deng W, Khera Z, Sajitha TA, Wang X, Wollstein G, Schuman JS, Lee S, Shi H, Ju MJ, Matsubara J, Beg MF, Sarunic M, Sappington RM, Chan KC. Early inner plexiform layer thinning and retinal nerve fiber layer thickening in excitotoxic retinal injury using deep learning-assisted optical coherence tomography. Acta Neuropathol Commun. 2024 Feb 01; 12(1):19.
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St Hilaire MA, ?mundad?ttir ML, Rahman SA, Rajaratnam SMW, R?ger M, Brainard GC, Czeisler CA, Andersen M, Gooley JJ, Lockley SW. The spectral sensitivity of human circadian phase resetting and melatonin suppression to light changes dynamically with light duration. Proc Natl Acad Sci U S A. 2022 12 20; 119(51):e2205301119.
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Kenney R, Liu M, Hasanaj L, Joseph B, Al-Hassan AA, Balk L, Behbehani R, Brandt AU, Calabresi PA, Frohman EM, Frohman T, Havla J, Hemmer B, Jiang H, Knier B, Korn T, Leocani L, Mart?nez-Lapiscina EH, Papadopoulou A, Paul F, Petzold A, Pisa M, Villoslada P, Zimmermann H, Ishikawa H, Schuman JS, Wollstein G, Chen Y, Saidha S, Thorpe LE, Galetta SL, Balcer LJ. Normative Data and Conversion Equation for Spectral-Domain Optical Coherence Tomography in an International Healthy Control Cohort. J Neuroophthalmol. 2022 12 01; 42(4):442-453.
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Nowroozzadeh MH, Khatami K, Estedlal A, Emadi Z, Zarei A, Razeghinejad R. Variance in the macular sublayers' volume as a diagnostic tool for primary open-angle glaucoma. Int Ophthalmol. 2023 Jan; 43(1):261-269.
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Kenney RC, Liu M, Hasanaj L, Joseph B, Abu Al-Hassan A, Balk LJ, Behbehani R, Brandt A, Calabresi PA, Frohman E, Frohman TC, Havla J, Hemmer B, Jiang H, Knier B, Korn T, Leocani L, Martinez-Lapiscina EH, Papadopoulou A, Paul F, Petzold A, Pisa M, Villoslada P, Zimmermann H, Thorpe LE, Ishikawa H, Schuman JS, Wollstein G, Chen Y, Saidha S, Galetta S, Balcer LJ. The Role of Optical Coherence Tomography Criteria and Machine Learning in Multiple Sclerosis and Optic Neuritis Diagnosis. Neurology. 2022 Sep 13; 99(11):e1100-e1112.
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Bowd C, Belghith A, Rezapour J, Christopher M, Hyman L, Jonas JB, Weinreb RN, Zangwill LM. Diagnostic Accuracy of Macular Thickness Map and Texture En Face Images for Detecting Glaucoma in Eyes With Axial High Myopia. Am J Ophthalmol. 2022 10; 242:26-35.
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Gardiner SK, Kinast RM, Chen TC, Strouthidis NG, De Moraes CG, Nouri-Mahdavi K, Myers JS, Jeoung JW, Lind JT, Rhodes LA, Budenz DL, Mansberger SL. Clinicians' Use of Quantitative Information When Assessing the Rate of Structural Progression in Glaucoma. Ophthalmol Glaucoma. 2022 Sep-Oct; 5(5):507-515.