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Dr. Rauschecker’s research interests are centered on the functional organization and plasticity of the cerebral cortex. Research in his lab focuses on the neural basis of auditory perception and auditory-motor integration in speech and music. These studies are using functional magnetic resonance imaging (fMRI) in humans. Parallel studies are conducted in nonhuman primates. This work is intended to lead to a deeper understanding of brain function and dysfunction in auditory processing and speech disorders, aphasia, agnosia and apraxia of speech. Research on hearing loss and tinnitus is aimed at understanding the brain mechanisms of this wide-spread disorder, and at the development of more intelligently designed hearing aids and neural prostheses. Dr. Rauschecker’s laboratory is also interested in the effects of sensory deprivation during brain development, relating to the question of how the brain of individuals with early blindness or deafness is adaptively reorganized through sensory substitution. These studies of brain plasticity also have relevance for the understanding of degenerative diseases of the brain, such as Alzheimer’s and Parkinson’s disease.
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Textbook of Tinnituspp.221-230, (2024)
Srikanth R. Damera,Lillian Chang, Plamen P. Nikolov, James A. Mattei, Suneel Banerjee,Laurie S. Glezer,Patrick H. Cox,Xiong Jiang,Josef P. Rauschecker,Maximilian Riesenhuber
biorxiv(2023)
Josef P. Rauschecker, Rosstin K. Afsahi
JOURNAL OF COMPARATIVE NEUROLOGYno. 18 (2023): 1883-1892
Journal of neurophysiologyno. 6 (2023): 1344-1358
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SCIENCE ADVANCESno. 50 (2023): eadi7632-eadi7632
PLOS ONEno. 11 (2023): e0286512
FRONTIERS IN NEUROSCIENCE (2023): 1293133-1293133
Cerebral Cortexno. 10 (2023): 6207-6227
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