Logo image
Sign in
Eliminating Synaptic Ribbons from Rods and Cones Halves the Releasable Vesicle Pool and Slows Down Replenishment
Journal article   Open access   Peer reviewed

Eliminating Synaptic Ribbons from Rods and Cones Halves the Releasable Vesicle Pool and Slows Down Replenishment

Chris S. Mesnard, Cody L. Barta, Asia L. Sladek, David Zenisek, Wallace B. Thoreson and CHRISTOPHER (Chris) S MESNARD
International Journal of Molecular Sciences, Vol.23(12)
2022

Abstract

Animals Glutamic Acid Mice Retina Retinal Cone Photoreceptor Cells Synapses Synaptic Transmission channel rhodopsin 2 glutamate transporter rhodopsin unclassified drug glutamic acid animal cell animal experiment Article contrast sensitivity controlled study dark adaptation electroretinogram excitatory postsynaptic potential exocytosis female male mouse multivesicular body nonhuman optogenetics optomotor response photopic vision retina cone retina horizontal nerve cell retina rod synapse temporal analysis vertebrate photoreceptor cell animal metabolism physiology retina synaptic transmission
url
https://doi.org/10.3390/ijms23126429View
Published (Version of record) Open

Metrics

1 Record Views

Details

Logo image