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Items: 1 to 20 of 221

1.

Aging of the human photoreceptor mosaic: evidence for selective vulnerability of rods in central retina.

Curcio CA, Millican CL, Allen KA, Kalina RE.

Invest Ophthalmol Vis Sci. 1993 Nov;34(12):3278-96.

PMID:
8225863
2.

Aging of the human retina. Differential loss of neurons and retinal pigment epithelial cells.

Gao H, Hollyfield JG.

Invest Ophthalmol Vis Sci. 1992 Jan;33(1):1-17.

PMID:
1730530
3.

Photoreceptor topography of the retina in the adult pigtail macaque (Macaca nemestrina).

Packer O, Hendrickson AE, Curcio CA.

J Comp Neurol. 1989 Oct 1;288(1):165-83.

PMID:
2794135
4.

Photoreceptor loss in age-related macular degeneration.

Curcio CA, Medeiros NE, Millican CL.

Invest Ophthalmol Vis Sci. 1996 Jun;37(7):1236-49.

PMID:
8641827
5.

Human photoreceptor topography.

Curcio CA, Sloan KR, Kalina RE, Hendrickson AE.

J Comp Neurol. 1990 Feb 22;292(4):497-523.

PMID:
2324310
6.

Development redistribution of photoreceptors across the Macaca nemestrina (pigtail macaque) retina.

Packer O, Hendrickson AE, Curcio CA.

J Comp Neurol. 1990 Aug 22;298(4):472-93.

PMID:
2229476
7.

Cone loss is delayed relative to rod loss during induced retinal degeneration in the diurnal cone-rich rodent Arvicanthis ansorgei.

Boudard DL, Tanimoto N, Huber G, Beck SC, Seeliger MW, Hicks D.

Neuroscience. 2010 Sep 15;169(4):1815-30. doi: 10.1016/j.neuroscience.2010.06.037. Epub 2010 Jun 22.

PMID:
20600653
8.

The occurrence of cone inclusions in the ageing human retina and their possible effect upon vision: an electron microscope study.

Nag TC, Wadhwa S, Chaudhury S.

Brain Res Bull. 2006 Dec 11;71(1-3):224-32. Epub 2006 Sep 27.

PMID:
17113950
9.

Cone-rod dependence in the rat retina: variation with the rate of rod damage.

Chrysostomou V, Valter K, Stone J.

Invest Ophthalmol Vis Sci. 2009 Jun;50(6):3017-23. doi: 10.1167/iovs.08-3004. Epub 2009 Jan 31.

PMID:
19182251
10.

Photoreceptor mosaic: number and distribution of rods and cones in the rhesus monkey retina.

Wikler KC, Williams RW, Rakic P.

J Comp Neurol. 1990 Jul 22;297(4):499-508.

PMID:
2384610
11.

The status of cones in the rhodopsin mutant P23H-3 retina: light-regulated damage and repair in parallel with rods.

Chrysostomou V, Stone J, Stowe S, Barnett NL, Valter K.

Invest Ophthalmol Vis Sci. 2008 Mar;49(3):1116-25. doi: 10.1167/iovs.07-1158.

PMID:
18326739
12.

Regressive and reactive changes in the connectivity patterns of rod and cone pathways of P23H transgenic rat retina.

Cuenca N, Pinilla I, Sauvé Y, Lu B, Wang S, Lund RD.

Neuroscience. 2004;127(2):301-17.

PMID:
15262321
13.

Connexin 36 in photoreceptor cells: studies on transgenic rod-less and cone-less mouse retinas.

Dang L, Pulukuri S, Mears AJ, Swaroop A, Reese BE, Sitaramayya A.

Mol Vis. 2004 May 11;10:323-7.

14.

Peripapillary chorioretinal atrophy: Bruch's membrane changes and photoreceptor loss.

Curcio CA, Saunders PL, Younger PW, Malek G.

Ophthalmology. 2000 Feb;107(2):334-43.

PMID:
10690836
15.
16.

Loss of cone molecular markers in rhodopsin-mutant human retinas with retinitis pigmentosa.

John SK, Smith JE, Aguirre GD, Milam AH.

Mol Vis. 2000 Nov 3;6:204-15.

17.

Structure-function analysis of rods and cones in juvenile, adult, and aged C57bl/6 and Balb/c mice.

Gresh J, Goletz PW, Crouch RK, Rohrer B.

Vis Neurosci. 2003 Mar-Apr;20(2):211-20.

PMID:
12916741
18.

Rod photoreceptor neurite sprouting in retinitis pigmentosa.

Li ZY, Kljavin IJ, Milam AH.

J Neurosci. 1995 Aug;15(8):5429-38.

19.

Nutritional manipulation of primate retinas. IV. Effects of n--3 fatty acids, lutein, and zeaxanthin on S-cones and rods in the foveal region.

Leung IY, Sandstrom MM, Zucker CL, Neuringer M, Max Snodderly D.

Exp Eye Res. 2005 Nov;81(5):513-29.

PMID:
15916761
20.

Detailed histopathologic characterization of the retinopathy, globe enlarged (rge) chick phenotype.

Montiani-Ferreira F, Fischer A, Cernuda-Cernuda R, Kiupel M, DeGrip WJ, Sherry D, Cho SS, Shaw GC, Evans MG, Hocking PM, Petersen-Jones SM.

Mol Vis. 2005 Jan 13;11:11-27.

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