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Xenopus vocalizations are controlled by a sexually differentiated hindbrain central pattern generator.
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2
NMDAR-dependent control of call duration in Xenopus laevis.
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Rhythm generation, coordination, and initiation in the vocal pathways of male African clawed frogs.
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Premotor Neuron Divergence Reflects Vocal Evolution.
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5-HT2C-like receptors in the brain of Xenopus laevis initiate sex-typical fictive vocalizations.
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Evolution of vocal patterns: tuning hindbrain circuits during species divergence.
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Sexually distinct development of vocal pathways in Xenopus laevis.
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Gekko gecko as a model organism for understanding aspects of laryngeal vocal evolution.
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Cetaceans are the next frontier for vocal rhythm research.
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The neurobiology of vocal communication in marmosets.
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Establishment of the body condition score for adult female Xenopus laevis.
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Convergent and divergent neural circuit architectures that support acoustic communication.
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Mapping the vocal circuitry of Alston's singing mouse with pseudorabies virus.
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Vocal and Electric Fish: Revisiting a Comparison of Two Teleost Models in the Neuroethology of Social Behavior.
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Molecular characterization of frog vocal neurons using constellation pharmacology.
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Vocal communication between male .
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Breathing and calling: neuronal networks in the Xenopus laevis hindbrain.
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A rapid neuromodulatory role for steroid hormones in the control of reproductive behavior.
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Rapid, hierarchical modulation of vocal patterning by steroid hormones.
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Functional specialization of male and female vocal motoneurons.
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Vocal circuitry in Xenopus laevis: telencephalon to laryngeal motor neurons.
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The Extent of the Dendritic Tree and the Number of Synapses in the Frog Motoneuron.
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Central pattern generators and the control of rhythmic movements.
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