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Genes, Brain, and Behavior|August 8, 2025
Simultaneous RNA Sequencing and DNA Methylation Profiling Reveals Neural Mechanisms That Regulate Sensitive Period Behavioral LearningSarah E London, Mark E Hauber, Matthew I McKim-Louder, et al.Neuroscience Letters|June 24, 2014
Expression of androgen receptor in the brain of a sub-oscine bird with an elaborate courtship displayLeonida Fusani, Zoe Donaldson, Sarah E London, et al.Neurobiology of Learning and Memory|December 17, 2002
Rapidly learned song-discrimination without behavioral reinforcement in adult male zebra finches (Taeniopygia guttata)Roy Stripling, Lynn Milewski, Amy A Kruse, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|April 2, 2004
Parallel FoxP1 and FoxP2 expression in songbird and human brain predicts functional interactionIkuko Teramitsu, Lili C Kudo, Sarah E London, et al.Neuroimage|August 4, 2020
Experience selectively alters functional connectivity within a neural network to predict learned behavior in juvenile songbirdsElliot A Layden, Huibo Li, Kathryn E Schertz, et al.Open Biology|September 6, 2013
Brain transcriptome of the violet-eared waxbill Uraeginthus granatina and recent evolution in the songbird genomeChristopher N Balakrishnan, Charles Chapus, Michael S Brewer, et al.Plos One|October 23, 2008
Birdsong "transcriptomics": neurochemical specializations of the oscine song systemPeter V Lovell, David F Clayton, Kirstin L Replogle, et al.Developmental Neurobiology|November 22, 2008
Conservation and expression of IQ-domain-containing calpacitin gene products (neuromodulin/GAP-43, neurogranin/RC3) in the adult and developing oscine song control systemDavid F Clayton, Julia M George, Claudio V Mello, et al.Proceedings of the National Academy of Sciences of the United States of America|October 10, 2012
Impact of experience-dependent and -independent factors on gene expression in songbird brainJenny Drnevich, Kirstin L Replogle, Peter Lovell, et al.BMC Neuroscience|October 20, 2012
High throughput analysis reveals dissociable gene expression profiles in two independent neural systems involved in the regulation of social behaviorTyler J Stevenson, Kirstin Replogle, Jenny Drnevich, et al.Pageof 9