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Jordan M Renna

Showing results (1-10 of 22) with videos related to

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Nature Neuroscience|June 7, 2011
Light acts through melanopsin to alter retinal waves and segregation of retinogeniculate afferentsJordan M Renna, Shijun Weng, David M Berson
Scientific Reports|February 22, 2023
Modeling cholinergic retinal waves: starburst amacrine cells shape wave generation, propagation, and direction biasMatthew J Tarchick, Dustin A Clute, Jordan M Renna
Current Eye Research|February 16, 2018
The Development of Mid-Wavelength Photoresponsivity in the Mouse RetinaPaul J Bonezzi, Maureen E Stabio, Jordan M Renna
The Journal of Comparative Neurology|February 1, 2020
Crosstalk: The diversity of melanopsin ganglion cell types has begun to challenge the canonical divide between image-forming and non-image-forming visionKatelyn B Sondereker, Maureen E Stabio, Jordan M Renna
The Journal of Physiology|September 4, 2020
Ex vivo electroretinograms made easy: performing ERGs using 3D printed componentsPaul J Bonezzi, Matthew J Tarchick, Jordan M Renna
Translational Research : the Journal of Laboratory and Clinical Medicine|June 11, 2022
Retinal organoid light responsivity: current status and future opportunitiesJessica R Onyak, M Natalia Vergara, Jordan M Renna
Investigative Ophthalmology & Visual Science|January 1, 2010
Muscarinic acetylcholine receptor localization and activation effects on ganglion response propertiesChristianne E Strang, Jordan M Renna, Franklin R Amthor, et al.
Methods in Molecular Biology (Clifton, N.J.)|March 23, 2018
Functional Assessment of Melanopsin-Driven Light Responses in the Mouse: Multielectrode Array RecordingsShi-Jun Weng, Jordan M Renna, Wei-Yi Chen, et al.
Plos One|April 14, 2017
Dorsal root ganglia neurite outgrowth measured as a function of changes in microelectrode array resistanceJordan M Renna, Jessica M Stukel, Rebecca Kuntz Willits, et al.
Visual Neuroscience|August 10, 2007
Nicotinic acetylcholine receptor expression by directionally selective ganglion cellsChristianne E Strang, Jordan M Renna, Franklin R Amthor, et al.
Pageof 3

Showing results (1-10 of 22) with videos related to

Sort By:
Pageof 3
Nature Neuroscience|June 7, 2011
Light acts through melanopsin to alter retinal waves and segregation of retinogeniculate afferentsJordan M Renna, Shijun Weng, David M Berson
Scientific Reports|February 22, 2023
Modeling cholinergic retinal waves: starburst amacrine cells shape wave generation, propagation, and direction biasMatthew J Tarchick, Dustin A Clute, Jordan M Renna
Current Eye Research|February 16, 2018
The Development of Mid-Wavelength Photoresponsivity in the Mouse RetinaPaul J Bonezzi, Maureen E Stabio, Jordan M Renna
The Journal of Comparative Neurology|February 1, 2020
Crosstalk: The diversity of melanopsin ganglion cell types has begun to challenge the canonical divide between image-forming and non-image-forming visionKatelyn B Sondereker, Maureen E Stabio, Jordan M Renna
The Journal of Physiology|September 4, 2020
Ex vivo electroretinograms made easy: performing ERGs using 3D printed componentsPaul J Bonezzi, Matthew J Tarchick, Jordan M Renna
Translational Research : the Journal of Laboratory and Clinical Medicine|June 11, 2022
Retinal organoid light responsivity: current status and future opportunitiesJessica R Onyak, M Natalia Vergara, Jordan M Renna
Investigative Ophthalmology & Visual Science|January 1, 2010
Muscarinic acetylcholine receptor localization and activation effects on ganglion response propertiesChristianne E Strang, Jordan M Renna, Franklin R Amthor, et al.
Methods in Molecular Biology (Clifton, N.J.)|March 23, 2018
Functional Assessment of Melanopsin-Driven Light Responses in the Mouse: Multielectrode Array RecordingsShi-Jun Weng, Jordan M Renna, Wei-Yi Chen, et al.
Plos One|April 14, 2017
Dorsal root ganglia neurite outgrowth measured as a function of changes in microelectrode array resistanceJordan M Renna, Jessica M Stukel, Rebecca Kuntz Willits, et al.
Visual Neuroscience|August 10, 2007
Nicotinic acetylcholine receptor expression by directionally selective ganglion cellsChristianne E Strang, Jordan M Renna, Franklin R Amthor, et al.
Pageof 3