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Nature Communications|July 26, 2018
Excitatory synaptic dysfunction cell-autonomously decreases inhibitory inputs and disrupts structural and functional plasticityHai-Yan He, Wanhua Shen, Lijun Zheng, et al.Neuron|April 13, 2001
Single-cell electroporation for gene transfer in vivoK Haas, W C Sin, A Javaherian, et al.Journal of Neurophysiology|December 6, 2018
Enhanced visual experience rehabilitates the injured brain in Xenopus tadpoles in an NMDAR-dependent mannerAbigail C Gambrill, Regina L Faulkner, Caroline R McKeown, et al.Eneuro|June 8, 2021
Application of Recombinant Rabies Virus to Xenopus Tadpole BrainRegina L Faulkner, Nicholas R Wall, Edward M Callaway, et al.The Journal of Comparative Neurology|December 15, 2012
Neurogenesis is required for behavioral recovery after injury in the visual system of Xenopus laevisCaroline R McKeown, Pranav Sharma, Heidi E Sharipov, et al.Cold Spring Harbor Protocols|September 5, 2013
Labeling individual neurons in the brains of live Xenopus tadpoles by electroporation of dyes or DNAEdward S Ruthazer, Anne Schohl, Neil Schwartz, et al.Cold Spring Harbor Protocols|August 3, 2013
Dye labeling retinal ganglion cell axons in live Xenopus tadpolesEdward S Ruthazer, Anne Schohl, Neil Schwartz, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|January 25, 2008
Roles of NR2A and NR2B in the development of dendritic arbor morphology in vivoRebecca C Ewald, Kendall R Van Keuren-Jensen, Carlos D Aizenman, et al.Molecular Pharmacology|July 1, 1996
Alanine scanning mutagenesis of conserved arginine/lysine-arginine/lysine-X-X-arginine/lysine G protein-activating motifs on m1 muscarinic acetylcholine receptorsN H Lee, N S Geoghagen, E Cheng, et al.Developmental Biology|March 31, 2015
An in vivo screen to identify candidate neurogenic genes in the developing Xenopus visual systemJennifer E Bestman, Lin-Chien Huang, Jane Lee-Osbourne, et al.Pageof 18