Jose Garcia-Lazaro

Affiliations: 
University of Oxford, Oxford, United Kingdom 
Area:
Sensory Neuroscience
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"Jose Garcia-Lazaro"
Mean distance: 16.01 (cluster 17)
 
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Parents

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Jan Schnupp grad student 2001- Oxford
Roland Schaette research scientist 2014- UCL Ear Institute
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Publications

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Monaghan JJM, Garcia-Lazaro JA, McAlpine D, et al. (2020) Hidden Hearing Loss Impacts the Neural Representation of Speech in Background Noise. Current Biology : Cb
Bakay WMH, Anderson LA, Garcia-Lazaro JA, et al. (2018) Hidden hearing loss selectively impairs neural adaptation to loud sound environments. Nature Communications. 9: 4298
Rajendran VG, Harper NS, Garcia-Lazaro JA, et al. (2017) Midbrain adaptation may set the stage for the perception of musical beat. Proceedings. Biological Sciences. 284
McAlpine D, Undurraga J, Garcia-Lazaro J, et al. (2016) Effects of hidden hearing loss on the representation of speech-in-noise in the gerbil auditory midbrain The Journal of the Acoustical Society of America. 140: 3152-3152
Schnupp JW, Garcia-Lazaro JA, Lesica NA. (2015) Periodotopy in the gerbil inferior colliculus: local clustering rather than a gradient map. Frontiers in Neural Circuits. 9: 37
Garcia-Lazaro JA, Shepard KN, Miranda JA, et al. (2015) An Overrepresentation of High Frequencies in the Mouse Inferior Colliculus Supports the Processing of Ultrasonic Vocalizations. Plos One. 10: e0133251
Schnupp JWH, Garcia-Lazaro JA, Lesica NA. (2015) Periodotopy in the gerbil inferior colliculus: Local clustering rather than a gradient map Frontiers in Neural Circuits. 9
Davies LA, Garcia-Lazaro JA, Schnupp JW, et al. (2012) Tell me something interesting: context dependent adaptation in somatosensory cortex. Journal of Neuroscience Methods. 210: 35-48
Garcia-Lazaro JA, Ahmed B, Schnupp JW. (2011) Emergence of tuning to natural stimulus statistics along the central auditory pathway. Plos One. 6: e22584
Szymanski FD, Garcia-Lazaro JA, Schnupp JW. (2009) Current source density profiles of stimulus-specific adaptation in rat auditory cortex. Journal of Neurophysiology. 102: 1483-90
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