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Gordon L. Fain

Affiliations: 
University of California, Los Angeles, Los Angeles, CA 
Area:
Visual system
Website:
http://www.physci.ucla.edu/research/fain/
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"Gordon Fain"
Mean distance: 14.09 (cluster 11)
 
SNBCP

Children

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Alapakkam P. Sampath grad student UCLA
Norianne Theresa Ingram grad student 2013-2019 UCLA
Jimmy Zhou post-doc UCLA

Collaborators

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Simon Laughlin collaborator 2008- Cambridge
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Publications

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Ingram NT, Fain GL, Sampath AP. (2020) Elevated energy requirement of cone photoreceptors. Proceedings of the National Academy of Sciences of the United States of America
Reingruber J, Ingram NT, Griffis KG, et al. (2020) A kinetic analysis of mouse rod and cone photoreceptor responses. The Journal of Physiology
Ellis EM, Frederiksen R, Morshedian A, et al. (2020) Separate ON and OFF pathways in vertebrate vision first arose during the Cambrian. Current Biology : Cb. 30: R633-R634
Chen NS, Ingram NT, Frederiksen R, et al. (2020) Diminished Cone Sensitivity in cpfl3 Mice Is Caused by Defective Transducin Signaling. Investigative Ophthalmology & Visual Science. 61: 26
Ingram NT, Sampath AP, Fain GL. (2020) Membrane conductances of mouse cone photoreceptors. The Journal of General Physiology. 152
Ingram NT, Sampath AP, Fain GL. (2019) Voltage-clamp recordings of light responses from wild-type and mutant mouse cone photoreceptors. The Journal of General Physiology
Morshedian A, Kaylor JJ, Ng SY, et al. (2019) Light-Driven Regeneration of Cone Visual Pigments through a Mechanism Involving RGR Opsin in Müller Glial Cells. Neuron
Wang T, Reingruber J, Woodruff ML, et al. (2018) The PDE6 mutation in the rd10 retinal degeneration mouse model causes protein mislocalization and instability and promotes cell death through increased ion influx. The Journal of Biological Chemistry
Morshedian A, Woodruff ML, Fain GL. (2018) Role of recoverin in rod photoreceptor light adaptation. The Journal of Physiology
Morshedian A, Toomey MB, Pollock GE, et al. (2017) Cambrian origin of the CYP27C1-mediated vitamin A1-to-A2 switch, a key mechanism of vertebrate sensory plasticity. Royal Society Open Science. 4: 170362
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