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Browsing publications by Professor Adrian Rees.

Newcastle AuthorsTitleYearFull text
Dr Bas Olthof
Dr Dominika Lyzwa
Dr Sasha Gartside
Professor Adrian Rees
Nitric oxide signalling underlies salicylate-induced increases in neuronal firing in the inferior colliculus: A central mechanism of tinnitus?2022
Professor Adrian Rees
The Inferior Colliculus2021
Sabine Gretenkord
Dr Bas Olthof
Myrto Stylianou
Professor Adrian Rees
Dr Sasha Gartside
et al.
Electrical stimulation of the ventral tegmental area (VTA) evokes sleep-like state transitions under urethane anaesthesia in the rat medial prefrontal cortex (mPFC) via dopamine D1-like receptors2020
Dr Quoc Vuong
Mark Laing
Professor Adrian Rees
Modulated stimuli demonstrate asymmetric interactions between hearing and vision2019
Dr Bas Olthof
Professor Adrian Rees
Dr Sasha Gartside
Multiple non-auditory cortical regions innervate the auditory midbrain2019
Dr Bas Olthof
Dr Sasha Gartside
Professor Adrian Rees
Puncta of Neuronal Nitric Oxide Synthase (nNOS) Mediate NMDA Receptor Signalling in the Auditory Midbrain2019
Professor Adrian Rees
Dr LLwyd Orton
Unifying the Midbrain: The Commissure of the Inferior Colliculus2018
Dr Colline Poirier
Dr Simon Baumann
Dr Pradeep Dheerendra
Dr Olivier Joly
Dr David Hunter
et al.
Auditory motion-specific mechanisms in the primate brain2017
Sabine Gretenkord
Professor Adrian Rees
Professor Miles Whittington
Dr Sasha Gartside
Dr Fiona LeBeau
et al.
Dorsal vs. ventral differences in fast Up-state-associated oscillations in the medial prefrontal cortex of the urethane-anesthetized rat2017
Dr LLwyd Orton
Christoforos Papasavvas
Professor Adrian Rees
Commissural Gain Control Enhances the Midbrain Representation of Sound Location2016
Dr Quoc Vuong
Dr Jehill Parikh
Mark Laing
Professor Andrew Blamire
Professor Adrian Rees
et al.
Visual modulation of auditory discrimination correlates with GABA in parietal multisensory area2016
Mark Laing
Professor Adrian Rees
Dr Quoc Vuong
Amplitude-modulated stimuli reveal auditory-visual interactions in brain activity and brain connectivity2015
Dr Fiona Pearson
Dr Kay Mann
Professor Adrian Rees
Professor Mark Pearce
The Effect of Childhood Infection on Hearing Function at Age 61 to 63 Years in the Newcastle Thousand Families Study2015
Dr Simon Baumann
Dr Olivier Joly
Professor Adrian Rees
Professor Christopher Petkov
Dr Li Sun
et al.
The Topography of Frequency and Time Representation in Primate Auditory Cortices2015
Dr Llwyd Orton
Professor Adrian Rees
Intercollicular commissural connections refine the representation of sound frequency and level in the auditory midbrain2014
Dr Fiona Pearson
Dr Kay Mann
Professor Adrian Rees
Professor Mark Pearce
Childhood infections, but not early life growth, influence hearing in the Newcastle thousand families birth cohort at age 14 years2013
Professor Adrian Rees
Classification of frequency response areas in the inferior colliculus reveals continua not discrete classes2013
Dr Llwyd Orton
Professor Paul Poon
Professor Adrian Rees
Deactivation of the inferior colliculus by cooling demonstrates intercollicular modulation of neuronal activity2012
Dr Simon Baumann
Professor Tim Griffiths
Dr Li Sun
Professor Christopher Petkov
Professor Alexander Thiele
et al.
Orthogonal representation of sound dimensions in the primate midbrain2011
Professor Mark Pearce
Dr Kay Mann
Professor Adrian Rees
Sex Differences in the Association between Fetal Growth and Childhood Hearing Level: The Newcastle Thousand Families Study2011
Professor Adrian Rees
A biologically inspired spiking neural network model of the auditory midbrain for sound source localisation2010
Dr Simon Baumann
Professor Tim Griffiths
Professor Adrian Rees
Dr David Hunter
Dr Li Sun
et al.
Characterisation of the BOLD response time course at different levels of the auditory pathway in non-human primates2010
Tobias Overath
Dr Sukhbinder Kumar
Dr Katherina von Kriegstein
Professor Adrian Rees
Professor Tim Griffiths
et al.
Cortical Mechanisms for the Segregation and Representation of Acoustic Textures2010
Professor Adrian Rees
Regularly firing neurons in the inferior colliculus have a weak interaural intensity difference sensitivity2010
Professor Adrian Rees
The Auditory Brain2010
Professor Adrian Rees
A biomimetic spiking neural network of the auditory midbrain for mobile robot sound localisation in reverberant environments2009
Professor Adrian Rees
Divergent and Point-to-Point Connections in the Commissural Pathway Between the Inferior Colliculi2009
David Perez Gonzalez
Professor Adrian Rees
Inputs to Neurons Expressing HCN Channels in the Auditory Brainstem2009
Professor Adrian Rees
Multiple sound source localisation in reverberant environments inspired by the auditory midbrain2009
David Perez Gonzalez
Professor Adrian Rees
Distribution of Voltage-Dependent Potassium Channels in the Inferior Colliculus of the Guinea Pig2008
Manuel Perez-Gonzalez
Professor Adrian Rees
Modelling the Dynamics of Neurons of the Mammalian Inferior Colliculus2008
David Perez Gonzalez
Professor Adrian Rees
Potassium channels as functional markers in the inferior colliculus2008
David Perez Gonzalez
Professor Adrian Rees
Progress in modelling neurones of the inferior colliculus2008
David Perez Gonzalez
Professor Adrian Rees
Robot sound localisation neural network inspired by the inferior colliculus2008
Edward Coote
Professor Adrian Rees
The distribution of nitric oxide synthase in the inferior colliculus of guinea pig2008
Professor Adrian Rees
Modeling Neurons of the Inferior Colliculus2007
Professor Adrian Rees
Modelled properties of single neurons in the auditory midbrain2007
Professor Adrian Rees
A GABAergic component in the commissure of the inferior colliculus in rat2006
Professor Adrian Rees
[abstract] Spectral and temporal dependencies of information processing in the auditory midbrain2005
Professor Adrian Rees
Intercollicular commissural projections modulate neuronal responses in the inferior colliculus2005
Professor Adrian Rees
Processing of Dynamic Spectral Properties of Sounds2005
Professor Adrian Rees
Processing of dynamic spectral properties of sounds2005
Professor Adrian Rees
Temporal Coding in the Auditory Midbrain2005
Professor Adrian Rees
Neural processing of amplitude-modulated sounds2004
Michael Simpson
Professor Adrian Rees
Dr Gary Green
Detection and direction-discrimination of diotic and dichotic ramp modulations in amplitude and phase2003
Rebecca Millman
Dr Gary Green
Professor Adrian Rees
Effect of a noise modulation masker on the detection of second-order amplitude modulation2003
Professor Adrian Rees
The commissure of the inferior colliculus shapes frequency response areas in rat: An in vivo study using reversible blockade with microinjection of kynurenic acid2003
Dr Gary Green
Professor Adrian Rees
Dr David Sanders
Firing patterns of inferior colliculus neurons-histology and mechanism to change firing patterns in rat brain slices2002
Dr Fiona LeBeau
Professor Adrian Rees
Iontophoresis in vivo demonstrates a key role for GABAA and glycinergic inhibition in shaping frequency response areas in the inferior colliculus of guinea pig2001
Dr Fiona LeBeau
Professor Adrian Rees
Iontophoretic studies in the inferior colliculus in vivo demonstrate a key role for GABA and glycine receptor mediated inhibition in shaping frequency response areas2001
Michael Simpson
Rebecca Millman
Professor Tim Griffiths
Dr Will Woods
Professor Adrian Rees
et al.
Second-order modulation detection thresholds for pure-tone and narrow-band noise carriers2001
Dr Sally Thornton
Professor Adrian Rees
The dorsal nucleus of the lateral lemniscus shapes auditory responses in the inferior colliculus2001
Professor Tim Griffiths
Jennifer Dean
Dr Will Woods
Professor Adrian Rees
Dr Gary Green
et al.
The Newcastle Auditory Battery (NAB): A temporal and spatial test battery for use on adult naïve subjects2001
Professor Adrian Rees
Dr Gary Green
Dynamic sensory sensitivity and children's word decoding skills2000
Professor Adrian Rees
Dr Gary Green
Dynamic sensory sensitivity and children's word decoding skills2000
Professor Tim Griffiths
Dr Gary Green
Professor Adrian Rees
Human brain areas involved in the analysis of auditory movement2000
Professor Tim Griffiths
Dr Gary Green
Professor Adrian Rees
Human brain areas involved in the analysis of auditory movement2000
Dr Gary Green
Professor Adrian Rees
Monaural and binaural detection of sinusoidal phase modulation of a 500-Hz tone2000
Professor Patrick Chinnery
Dr Gary Green
Professor Adrian Rees
Emeritus Professor Doug Turnbull
Professor Tim Griffiths
et al.
The spectrum of hearing loss due to mitochondrial DNA defects2000
Professor Adrian Rees
Dr Gary Green
Can sensitivity to auditory frequency modulation predict children's phonological and reading skills?1999
Professor Tim Griffiths
Professor Adrian Rees
Dr Gary Green
Disorders of human complex sound processing1999
Professor Tim Griffiths
Professor Adrian Rees
Dr Gary Green
FMRI investigation of sound-movement analysis1999