Retinal Ganglion Cells
"Retinal Ganglion Cells" is a descriptor in the National Library of Medicine's controlled vocabulary thesaurus,
MeSH (Medical Subject Headings). Descriptors are arranged in a hierarchical structure,
which enables searching at various levels of specificity.
Neurons of the innermost layer of the retina, the internal plexiform layer. They are of variable sizes and shapes, and their axons project via the OPTIC NERVE to the brain. A small subset of these cells act as photoreceptors with projections to the SUPRACHIASMATIC NUCLEUS, the center for regulating CIRCADIAN RHYTHM.
Descriptor ID |
D012165
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MeSH Number(s) |
A08.663.650.850.875 A09.371.729.831.875 A11.671.650.850.875
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Concept/Terms |
Retinal Ganglion Cells- Retinal Ganglion Cells
- Cell, Retinal Ganglion
- Cells, Retinal Ganglion
- Ganglion Cell, Retinal
- Ganglion Cells, Retinal
- Retinal Ganglion Cell
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Below are MeSH descriptors whose meaning is more general than "Retinal Ganglion Cells".
Below are MeSH descriptors whose meaning is more specific than "Retinal Ganglion Cells".
This graph shows the total number of publications written about "Retinal Ganglion Cells" by people in UAMS Profiles by year, and whether "Retinal Ganglion Cells" was a major or minor topic of these publications.
To see the data from this visualization as text, click here.
Year | Major Topic | Minor Topic | Total |
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2024 | 1 | 1 | 2 | 2022 | 0 | 1 | 1 | 2020 | 0 | 1 | 1 | 2019 | 1 | 1 | 2 | 2016 | 1 | 0 | 1 | 2011 | 2 | 0 | 2 | 1991 | 0 | 1 | 1 |
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Below are the most recent publications written about "Retinal Ganglion Cells" by people in Profiles over the past ten years.
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Kamalipour A, Moghimi S, Khosravi P, Tansuebchueasai N, Vasile C, Adelpour M, Gunasegaran G, Nishida T, Zangwill LM, Lam AKN, Leung CKS, Weinreb RN. Retinal Nerve Fiber Layer Optical Texture Analysis and 10-2 Visual Field Assessment in Glaucoma. Am J Ophthalmol. 2024 Oct; 266:118-134.
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Mandal S, Jammal AA, Malek D, Medeiros FA. Progression or Aging? A Deep Learning Approach for Distinguishing Glaucoma Progression From Age-Related Changes in OCT Scans. Am J Ophthalmol. 2024 Oct; 266:46-55.
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Nishida T, Weinreb RN, Tansuebchueasai N, Wu JH, Meller L, Mahmoudinezhad G, Gunasegaran G, Adelpour M, Moghimi S. Smoking Intensity is Associated With Progressive Optic Nerve Head Vessel Density Loss in Glaucoma. J Glaucoma. 2024 Jun 01; 33(6):394-399.
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Medeiros FA, Malek DA, Tseng H, Swaminathan SS, Boland MV, Friedman DS, Jammal AA. Short-term Detection of Fast Progressors in Glaucoma: The Fast Progression Assessment through Clustered Evaluation (Fast-PACE) Study. Ophthalmology. 2024 Jun; 131(6):645-657.
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Ahmed A, Jammal AA, Estrela T, Berchuck SI, Medeiros FA. Intraocular Pressure and Rates of Macular Thinning in Glaucoma. Ophthalmol Glaucoma. 2023 Sep-Oct; 6(5):457-465.
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Mariottoni EB, Datta S, Shigueoka LS, Jammal AA, Tavares IM, Henao R, Carin L, Medeiros FA. Deep Learning-Assisted Detection of Glaucoma Progression in Spectral-Domain OCT. Ophthalmol Glaucoma. 2023 May-Jun; 6(3):228-238.
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Onyekaba NE, Estrela T, Naithani R, McCarthy KM, Jammal AA, Medeiros FA. Comparison of 10-2 and 24-2 Perimetry to Diagnose Glaucoma Using OCT as an Independent Reference Standard. Ophthalmol Glaucoma. 2023 Mar-Apr; 6(2):187-197.
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Elhusseiny AM, Fong JW, Hsu C, Grigorian F, Grigorian AP, Soliman MK, Sallam AB, Uwaydat SH, Phillips PH. Oral Fluorescein Angiography for the Diagnosis of Papilledema Versus Pseudopapilledema in Children. Am J Ophthalmol. 2023 01; 245:8-13.
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Kang JM, Jammal AA, Medeiros FA. Association between statin use and rates of structural and functional loss in glaucoma. Br J Ophthalmol. 2023 09; 107(9):1269-1274.
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Lee T, Jammal AA, Medeiros FA. Association Between Serum Vitamin D Level and Rates of Structural and Functional Glaucomatous Progression. J Glaucoma. 2022 07 01; 31(7):614-621.
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Jammal AA, Berchuck SI, Mariottoni EB, Tanna AP, Costa VP, Medeiros FA. Blood Pressure and Glaucomatous Progression in a Large Clinical Population. Ophthalmology. 2022 02; 129(2):161-170.
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Proudfoot JA, Zangwill LM, Moghimi S, Bowd C, Saunders LJ, Hou H, Belghith A, Medeiros FA, Williams-Steppe E, Acera T, Dirkes K, Weinreb R. Estimated Utility of the Short-term Assessment of Glaucoma Progression Model in Clinical Practice. JAMA Ophthalmol. 2021 Aug 01; 139(8):839-846.
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Datta S, Mariottoni EB, Dov D, Jammal AA, Carin L, Medeiros FA. RetiNerveNet: using recursive deep learning to estimate pointwise 24-2 visual field data based on retinal structure. Sci Rep. 2021 06 15; 11(1):12562.
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Fouda AY, Xu Z, Narayanan SP, Caldwell RW, Caldwell RB. Utility of LysM-cre and Cdh5-cre Driver Mice in Retinal and Brain Research: An Imaging Study Using tdTomato Reporter Mouse. Invest Ophthalmol Vis Sci. 2020 03 09; 61(3):51.
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Palani CD, Fouda AY, Liu F, Xu Z, Mohamed E, Giri S, Smith SB, Caldwell RB, Narayanan SP. Deletion of Arginase 2 Ameliorates Retinal Neurodegeneration in a Mouse Model of Multiple Sclerosis. Mol Neurobiol. 2019 Dec; 56(12):8589-8602.
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Laspas P, Zhutdieva MB, Brochhausen C, Musayeva A, Zadeh JK, Pfeiffer N, Xia N, Li H, Wess J, Gericke A. The M1 muscarinic acetylcholine receptor subtype is important for retinal neuron survival in aging mice. Sci Rep. 2019 03 26; 9(1):5222.
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Yazdani S, Samadi P, Pakravan M, Esfandiari H, Ghahari E, Nourinia R. Peripapillary RNFL Thickness Changes after Panretinal Photocoagulation. Optom Vis Sci. 2016 09; 93(9):1158-62.
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Pakravan M, Sanjari N, Esfandiari H, Pakravan P, Yaseri M. The effect of high-dose steroids, and normobaric oxygen therapy, on recent onset non-arteritic anterior ischemic optic neuropathy: a randomized clinical trial. Graefes Arch Clin Exp Ophthalmol. 2016 Oct; 254(10):2043-2048.
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Park YH, Broyles HV, He S, McGrady NR, Li L, Yorio T. Involvement of AMPA Receptor and Its Flip and Flop Isoforms in Retinal Ganglion Cell Death Following Oxygen/Glucose Deprivation. Invest Ophthalmol Vis Sci. 2016 Feb; 57(2):508-26.
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