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Plos One
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June 11, 2013
Feedback from horizontal cells to cones mediates color induction and may facilitate color constancy in rainbow trout
Shai Sabbah, Changhai Zhu, Mark A W Hornsby, et al.
Frontiers in Molecular Neuroscience
|
January 30, 2018
Pannexin 1 Is Critically Involved in Feedback from Horizontal Cells to Cones
Valentina Cenedese, Wim de Graaff, Tamás Csikós, et al.
The Journal of Physiology
|
August 15, 2012
Chloride currents in cones modify feedback from horizontal cells to cones in goldfish retina
Duco Endeman, Iris Fahrenfort, Trijntje Sjoerdsma, et al.
Journal of Neurophysiology
|
October 7, 2016
Specific connectivity between photoreceptors and horizontal cells in the zebrafish retina
Lauw J Klaassen, Wim de Graaff, Jorrit B van Asselt, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience
|
May 15, 2009
A transient receptor potential-like channel mediates synaptic transmission in rod bipolar cells
Yin Shen, J Alexander Heimel, Maarten Kamermans, et al.
The Journal of Comparative Neurology
|
February 15, 2007
Retinal horizontal cell-specific promoter activity and protein expression of zebrafish connexin 52.6 and connexin 55.5
Colleen R Shields, Jan Klooster, Yvonne Claassen, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience
|
April 26, 2013
Retinal region of polarization sensitivity switches during ontogeny of rainbow trout
Shai Sabbah, Maheen F Habib-Nayany, Zahra Dargaei, et al.
Plos One
|
November 7, 2013
Pannexin1 channel proteins in the zebrafish retina have shared and unique properties
Sarah Kurtenbach, Nora Prochnow, Stefan Kurtenbach, et al.
Developmental Neurobiology
|
October 31, 2025
Investigating the Role of Zebrafish Retinoschisin Homologs Rs1a and Rs1b During Retinal Development
Isa van der Veen, Céline Koster, Jacoline B Ten Brink, et al.
Plos Biology
|
May 22, 2014
Extracellular ATP hydrolysis inhibits synaptic transmission by increasing ph buffering in the synaptic cleft
Rozan Vroman, Lauw J Klaassen, Marcus H C Howlett, et al.
Page
of 6
Search research articles
Search
Showing results (21-30 of 58) with videos related to
Sort By:
Page
of 6
Plos One
|
June 11, 2013
Feedback from horizontal cells to cones mediates color induction and may facilitate color constancy in rainbow trout
Shai Sabbah, Changhai Zhu, Mark A W Hornsby, et al.
Frontiers in Molecular Neuroscience
|
January 30, 2018
Pannexin 1 Is Critically Involved in Feedback from Horizontal Cells to Cones
Valentina Cenedese, Wim de Graaff, Tamás Csikós, et al.
The Journal of Physiology
|
August 15, 2012
Chloride currents in cones modify feedback from horizontal cells to cones in goldfish retina
Duco Endeman, Iris Fahrenfort, Trijntje Sjoerdsma, et al.
Journal of Neurophysiology
|
October 7, 2016
Specific connectivity between photoreceptors and horizontal cells in the zebrafish retina
Lauw J Klaassen, Wim de Graaff, Jorrit B van Asselt, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience
|
May 15, 2009
A transient receptor potential-like channel mediates synaptic transmission in rod bipolar cells
Yin Shen, J Alexander Heimel, Maarten Kamermans, et al.
The Journal of Comparative Neurology
|
February 15, 2007
Retinal horizontal cell-specific promoter activity and protein expression of zebrafish connexin 52.6 and connexin 55.5
Colleen R Shields, Jan Klooster, Yvonne Claassen, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience
|
April 26, 2013
Retinal region of polarization sensitivity switches during ontogeny of rainbow trout
Shai Sabbah, Maheen F Habib-Nayany, Zahra Dargaei, et al.
Plos One
|
November 7, 2013
Pannexin1 channel proteins in the zebrafish retina have shared and unique properties
Sarah Kurtenbach, Nora Prochnow, Stefan Kurtenbach, et al.
Developmental Neurobiology
|
October 31, 2025
Investigating the Role of Zebrafish Retinoschisin Homologs Rs1a and Rs1b During Retinal Development
Isa van der Veen, Céline Koster, Jacoline B Ten Brink, et al.
Plos Biology
|
May 22, 2014
Extracellular ATP hydrolysis inhibits synaptic transmission by increasing ph buffering in the synaptic cleft
Rozan Vroman, Lauw J Klaassen, Marcus H C Howlett, et al.
Page
of 6