Search results (22)
« Back to PublicationsMidbrain encodes sound detection behavior without auditory cortex.
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Lee T-Y. et al, (2024), Elife, 12
Neural processing in the primary auditory cortex following cholinergic lesions of the basal forebrain in ferrets.
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Nodal FR. et al, (2024), Hear Res, 447
Integration of somatosensory and motor-related information in the auditory system.
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Lohse M. et al, (2022), Front Neurosci, 16
Subcortical circuits mediate communication between primary sensory cortical areas in mice.
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Lohse M. et al, (2021), Nat Commun, 12
Complexity of frequency receptive fields predicts tonotopic variability across species
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Gaucher Q. et al, (2020), eLife, 9, 1 - 25
Decoding mouse behavior to explain single-trial decisions and their relationship with neural activity
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Weissenberger Y. et al, (2019)
Local and Global Spatial Organization of Interaural Level Difference and Frequency Preferences in Auditory Cortex.
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Panniello M. et al, (2018), Cereb Cortex, 28, 350 - 369
Thalamic input to auditory cortex is locally heterogeneous but globally tonotopic.
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Vasquez-Lopez SA. et al, (2017), Elife, 6
Behavioral training promotes multiple adaptive processes following acute hearing loss.
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Keating P. et al, (2016), Elife, 5
Thalamic nuclei convey diverse contextual information to layer 1 of visual cortex.
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Roth MM. et al, (2016), Nat Neurosci, 19, 299 - 307
Functional Microarchitecture of the Mouse Dorsal Inferior Colliculus Revealed through In Vivo Two-Photon Calcium Imaging.
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Barnstedt O. et al, (2015), J Neurosci, 35, 10927 - 10939
Complementary adaptive processes contribute to the developmental plasticity of spatial hearing
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Keating P. et al, (2015), Nature Neuroscience, 18, 185 - 187
Complementary adaptive processes contribute to the developmental plasticity of spatial hearing.
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Keating P. et al, (2015), Nat Neurosci, 18, 185 - 187
Context-specific reweighting of auditory spatial cues following altered experience during development.
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Keating P. et al, (2013), Curr Biol, 23, 1291 - 1299
Neural circuits underlying adaptation and learning in the perception of auditory space.
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King AJ. et al, (2011), Neurosci Biobehav Rev, 35, 2129 - 2139

