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3.1 Microscopy (26)

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Display all abstracts in classification 3.1 Microscopy

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68960 Toward in vivo two-photon analysis of mouse aqueous outflow structure and function
Gonzalez JM
Experimental Eye Research 2017; 158: 161-170
69066 In Vivo Goblet Cell Density as a Potential Indicator of Glaucoma Filtration Surgery Outcome
Agnifili L
Investigative Ophthalmology and Visual Science 2016; 57: 2898-2905
69238 Lamina Cribrosa Microarchitecture in Monkey Early Experimental Glaucoma: Global Change
Reynaud J
Investigative Ophthalmology and Visual Science 2016; 57: 3451-3469
69481 Automatic quantitative analysis of experimental primary and secondary retinal neurodegeneration: implications for optic neuropathies
Davis BM
Cell death discovery 2016; 2: 16031
69495 Automatic counting of microglial cell activation and its applications
Gallego BI
Neural Regeneration Research 2016; 11: 1212-1215
69238 Lamina Cribrosa Microarchitecture in Monkey Early Experimental Glaucoma: Global Change
Lockwood H
Investigative Ophthalmology and Visual Science 2016; 57: 3451-3469
68960 Toward in vivo two-photon analysis of mouse aqueous outflow structure and function
Ko MK
Experimental Eye Research 2017; 158: 161-170
69495 Automatic counting of microglial cell activation and its applications
de Gracia P
Neural Regeneration Research 2016; 11: 1212-1215
69481 Automatic quantitative analysis of experimental primary and secondary retinal neurodegeneration: implications for optic neuropathies
Guo L
Cell death discovery 2016; 2: 16031
69066 In Vivo Goblet Cell Density as a Potential Indicator of Glaucoma Filtration Surgery Outcome
Fasanella V
Investigative Ophthalmology and Visual Science 2016; 57: 2898-2905
68960 Toward in vivo two-photon analysis of mouse aqueous outflow structure and function
Masedunskas A
Experimental Eye Research 2017; 158: 161-170
69481 Automatic quantitative analysis of experimental primary and secondary retinal neurodegeneration: implications for optic neuropathies
Brenton J
Cell death discovery 2016; 2: 16031
69066 In Vivo Goblet Cell Density as a Potential Indicator of Glaucoma Filtration Surgery Outcome
Mastropasqua R
Investigative Ophthalmology and Visual Science 2016; 57: 2898-2905
69238 Lamina Cribrosa Microarchitecture in Monkey Early Experimental Glaucoma: Global Change
Gardiner SK
Investigative Ophthalmology and Visual Science 2016; 57: 3451-3469
69481 Automatic quantitative analysis of experimental primary and secondary retinal neurodegeneration: implications for optic neuropathies
Langley L
Cell death discovery 2016; 2: 16031
69238 Lamina Cribrosa Microarchitecture in Monkey Early Experimental Glaucoma: Global Change
Williams G
Investigative Ophthalmology and Visual Science 2016; 57: 3451-3469
68960 Toward in vivo two-photon analysis of mouse aqueous outflow structure and function
Hong YK
Experimental Eye Research 2017; 158: 161-170
69066 In Vivo Goblet Cell Density as a Potential Indicator of Glaucoma Filtration Surgery Outcome
Frezzotti P
Investigative Ophthalmology and Visual Science 2016; 57: 2898-2905
68960 Toward in vivo two-photon analysis of mouse aqueous outflow structure and function
Weigert R
Experimental Eye Research 2017; 158: 161-170
69481 Automatic quantitative analysis of experimental primary and secondary retinal neurodegeneration: implications for optic neuropathies
Normando EM
Cell death discovery 2016; 2: 16031
69066 In Vivo Goblet Cell Density as a Potential Indicator of Glaucoma Filtration Surgery Outcome
Curcio C
Investigative Ophthalmology and Visual Science 2016; 57: 2898-2905
69238 Lamina Cribrosa Microarchitecture in Monkey Early Experimental Glaucoma: Global Change
Yang H
Investigative Ophthalmology and Visual Science 2016; 57: 3451-3469
69481 Automatic quantitative analysis of experimental primary and secondary retinal neurodegeneration: implications for optic neuropathies
Cordeiro MF
Cell death discovery 2016; 2: 16031
69238 Lamina Cribrosa Microarchitecture in Monkey Early Experimental Glaucoma: Global Change
Burgoyne CF
Investigative Ophthalmology and Visual Science 2016; 57: 3451-3469
68960 Toward in vivo two-photon analysis of mouse aqueous outflow structure and function
Tan JC
Experimental Eye Research 2017; 158: 161-170

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