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Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 9/2008, Volume 105, Issue 39, pp. 15112 - 15117
Journal Article
Journal of Comparative Neurology, ISSN 0021-9967, 01/2007, Volume 500, Issue 2, pp. 222 - 238
Retinal degeneration 10 (rd10) mice are a model of autosomal recessive retinitis pigmentosa (RP), identified by Chang et al. in 2002 (Vision Res. 42:517–525).... 
retinitis pigmentosa | immunocytochemistry | bipolar cell | ERG | confocal microscopy | horizontal cell | Confocal microscopy | Horizontal cell | Immunocytochemistry | Retinitis pigmentosa | Bipolar cell | RAT RETINA | ROD BIPOLAR CELLS | MODEL | RD/RD MOUSE | NEUROSCIENCES | PHOTOTRANSDUCTION | ZOOLOGY | ACTIVATION STEPS | NEURONS | GENE-THERAPY | RETINITIS-PIGMENTOSA | PHOTORECEPTOR DEGENERATION | Immunohistochemistry | Dendrites - pathology | Retinal Bipolar Cells - pathology | Electroretinography - methods | Retina - metabolism | Cell Count | Retinal Horizontal Cells - pathology | Nerve Degeneration - physiopathology | Nerve Degeneration - genetics | Retinal Rod Photoreceptor Cells - metabolism | Mice, Mutant Strains | Nerve Degeneration - diagnosis | Retinitis Pigmentosa - physiopathology | Disease Models, Animal | Biomarkers - metabolism | Dendrites - metabolism | Retinal Bipolar Cells - metabolism | Mice, Inbred C57BL | Retina - physiopathology | Retinitis Pigmentosa - genetics | Membrane Potentials - physiology | Mutation - genetics | Retinitis Pigmentosa - diagnosis | Nerve Tissue Proteins - metabolism | Microscopy, Confocal | Animals | Mice | Retinal Horizontal Cells - metabolism | Apoptosis - physiology | Retina - pathology | Retinal Rod Photoreceptor Cells - pathology | Retinal Rod Photoreceptor Cells - physiopathology
Journal Article
Journal Article
European Journal of Neuroscience, ISSN 0953-816X, 11/2007, Volume 26, Issue 9, pp. 2506 - 2515
Journal Article
Journal of Comparative Neurology, ISSN 0021-9967, 09/2003, Volume 464, Issue 1, pp. 1 - 16
Many photoreceptor degenerations initially affect rods, secondarily leading to cone death. It has long been assumed that the surviving neural retina is largely... 
animal models | molecular phenotyping | remodeling | cell death | retina | retinitis pigmentosa | plasticity | Animal models | Cell death | Retinitis pigmentosa | Plasticity | Retina | Remodeling | Molecular phenotyping | MORPHOMETRIC ANALYSIS | RABBIT RETINA | RAT RETINA | CEREBELLAR MUTANT MOUSE | NEUROSCIENCES | AMINO-ACID SIGNATURES | RODLESS RETINA | ZOOLOGY | INNER RETINA | ELECTRICAL-STIMULATION | GANGLION-CELLS | RETINITIS-PIGMENTOSA | Immunohistochemistry | Neuroglia - ultrastructure | Glutathione - metabolism | gamma-Aminobutyric Acid - metabolism | Humans | Retinal Degeneration - metabolism | Cell Movement - physiology | Amino Acids - metabolism | Neurons - classification | Tolonium Chloride - metabolism | Indoles - metabolism | Neurons - ultrastructure | Synapses - metabolism | Cell Death | Aging | Neurons - metabolism | Photoreceptor Cells - pathology | Disease Models, Animal | Animals, Genetically Modified | Retinal Degeneration - genetics | Rats | Synapses - ultrastructure | Image Processing, Computer-Assisted - methods | Retinal Degeneration - physiopathology | Microscopy, Electron | Mice, Knockout | Pigment Epithelium of Eye - metabolism | Phenotype | Animals | Rhodopsin - genetics | Photoreceptor Cells - physiopathology | Photoreceptor Cells - metabolism | Synapses - classification | Neuroglia - metabolism | Mice | Mutation | Retinal Degeneration - pathology | Taurine - metabolism
Journal Article
Journal of Neuroscience, ISSN 0270-6474, 08/2001, Volume 21, Issue 16, pp. 6036 - 6044
In the mammalian retina, rods feed into the cone pathway through electrotonic coupling, and recent histological data suggest the involvement of connexin36... 
VEP | Gap junctions | Visual evoked potential | Cone ON bipolar cell | Retina | Mouse | Electroretinogram | Cx36 | ERG | Visual transmission | All amacrine cell | Connexin36 | Knock-out | connexin36 | visual transmission | gap junctions | HORIZONTAL CELLS | CAT RETINA | RABBIT RETINA | AII-AMACRINE CELLS | knock-out | MAMMALIAN RETINA | NEUROSCIENCES | cone ON bipolar cell | INNER PLEXIFORM LAYER | mouse | BIPOLAR CELLS | ROD PHOTORECEPTORS | retina | electroretinogram | MOUSE RETINA | RAT-BRAIN | visual evoked potential | Gap Junctions - metabolism | Visual Pathways - physiopathology | Reaction Time | Retinal Cone Photoreceptor Cells - physiopathology | Synaptic Transmission | Vision Disorders - physiopathology | Retinal Cone Photoreceptor Cells - pathology | Evoked Potentials, Visual | Visual Pathways - pathology | Biological Clocks | Eye Proteins - genetics | Electroretinography | Cell Line | Connexins - deficiency | Gap Junctions - pathology | Gene Targeting | Retina - physiopathology | Connexins - genetics | Vision Disorders - pathology | Connexins - metabolism | Mice, Knockout | Homozygote | Microscopy, Confocal | Animals | Vision Disorders - genetics | Eye Proteins - metabolism | Photic Stimulation - methods | Vision, Ocular | Superior Colliculi - cytology | Mice | Retina - pathology | Retinal Rod Photoreceptor Cells - pathology
Journal Article
Glia, ISSN 0894-1491, 11/2007, Volume 55, Issue 14, pp. 1486 - 1497
Journal Article
Nature Genetics, ISSN 1061-4036, 02/2000, Volume 24, Issue 2, pp. 127 - 131
Journal Article