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J Pittler

Showing results (41-50 of 69) with videos related to

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Documenta Ophthalmologica. Advances in Ophthalmology|February 28, 2012
Age-related changes in Cngb1-X1 knockout mice: prolonged cone survivalYouwen Zhang, Glen R Rubin, Naomi Fineberg, et al.
Cell Communication and Signaling : CCS|October 18, 2014
Overexpression of rod photoreceptor glutamic acid rich protein 2 (GARP2) increases gain and slows recovery in mouse retinaShanta Sarfare, Alex S McKeown, Jeffrey Messinger, et al.
Biochemistry|January 7, 2010
Activation of retinal guanylyl cyclase RetGC1 by GCAP1: stoichiometry of binding and effect of new LCA-related mutationsIgor V Peshenko, Elena V Olshevskaya, Suxia Yao, et al.
Genomics|April 1, 1992
Chromosome mapping of the rod photoreceptor cGMP phosphodiesterase beta-subunit gene in mouse and human: tight linkage to the Huntington disease region (4p16.3)M R Altherr, J J Wasmuth, M F Seldin, et al.
The Journal of Biological Chemistry|November 25, 1990
Mouse opsin. Gene structure and molecular basis of multiple transcriptsM R al-Ubaidi, S J Pittler, M S Champagne, et al.
Journal of Biomedical Optics|June 28, 2012
Investigation of the hyper-reflective inner/outer segment band in optical coherence tomography of living frog retinaRong-Wen Lu, Christine A Curcio, Youwen Zhang, et al.
Disease Models & Mechanisms|June 27, 2025
Dhdds T206A and Dhdds K42E knock-in mouse models of retinitis pigmentosa 59 are phenotypically similarMai N Nguyen, Dibyendu Chakraborty, Jeffrey Messinger, et al.
Optics Express|March 29, 2012
Comparative intrinsic optical signal imaging of wild-type and mutant mouse retinasQiu-Xiang Zhang, Youwen Zhang, Rong-Wen Lu, et al.
Cell|November 27, 2012
Three-dimensional architecture of the rod sensory cilium and its disruption in retinal neurodegenerationJared C Gilliam, Juan T Chang, Ivette M Sandoval, et al.
Genomics|February 1, 1990
Molecular characterization of human and bovine rod photoreceptor cGMP phosphodiesterase alpha-subunit and chromosomal localization of the human geneS J Pittler, W Baehr, J J Wasmuth, et al.
Pageof 7

Showing results (41-50 of 69) with videos related to

Sort By:
Pageof 7
Documenta Ophthalmologica. Advances in Ophthalmology|February 28, 2012
Age-related changes in Cngb1-X1 knockout mice: prolonged cone survivalYouwen Zhang, Glen R Rubin, Naomi Fineberg, et al.
Cell Communication and Signaling : CCS|October 18, 2014
Overexpression of rod photoreceptor glutamic acid rich protein 2 (GARP2) increases gain and slows recovery in mouse retinaShanta Sarfare, Alex S McKeown, Jeffrey Messinger, et al.
Biochemistry|January 7, 2010
Activation of retinal guanylyl cyclase RetGC1 by GCAP1: stoichiometry of binding and effect of new LCA-related mutationsIgor V Peshenko, Elena V Olshevskaya, Suxia Yao, et al.
Genomics|April 1, 1992
Chromosome mapping of the rod photoreceptor cGMP phosphodiesterase beta-subunit gene in mouse and human: tight linkage to the Huntington disease region (4p16.3)M R Altherr, J J Wasmuth, M F Seldin, et al.
The Journal of Biological Chemistry|November 25, 1990
Mouse opsin. Gene structure and molecular basis of multiple transcriptsM R al-Ubaidi, S J Pittler, M S Champagne, et al.
Journal of Biomedical Optics|June 28, 2012
Investigation of the hyper-reflective inner/outer segment band in optical coherence tomography of living frog retinaRong-Wen Lu, Christine A Curcio, Youwen Zhang, et al.
Disease Models & Mechanisms|June 27, 2025
Dhdds T206A and Dhdds K42E knock-in mouse models of retinitis pigmentosa 59 are phenotypically similarMai N Nguyen, Dibyendu Chakraborty, Jeffrey Messinger, et al.
Optics Express|March 29, 2012
Comparative intrinsic optical signal imaging of wild-type and mutant mouse retinasQiu-Xiang Zhang, Youwen Zhang, Rong-Wen Lu, et al.
Cell|November 27, 2012
Three-dimensional architecture of the rod sensory cilium and its disruption in retinal neurodegenerationJared C Gilliam, Juan T Chang, Ivette M Sandoval, et al.
Genomics|February 1, 1990
Molecular characterization of human and bovine rod photoreceptor cGMP phosphodiesterase alpha-subunit and chromosomal localization of the human geneS J Pittler, W Baehr, J J Wasmuth, et al.
Pageof 7