Neuroreport · 1999 · 343 citations · 4 references
MusicAuditory ImageryAuditory CortexSocial SciencesPositron Emission TomographySpatial LocalizationCognitive NeuroscienceMultisensory IntegrationTinnitus Retraining TherapyRadiologyHealth SciencesAuditory ProcessingCognitive ScienceAuditory ModelingNeuroimagingHuman HearingNeurophysiologyTinnitusNeuroanatomyAuditory PhysiologySelective ImagingPhantom Auditory SensationNeuroscienceAuditory System
The study selectively imaged tinnitus neural correlates by contrasting a no‑tinnitus condition with a tinnitus condition induced by eye movements. PET showed that tinnitus increases regional cerebral blood flow bilaterally in temporo‑parietal association auditory areas but not in primary auditory cortex, implying that perceptual qualities such as intensity, frequency, and spatial localization are encoded in temporo‑parietal regions rather than primary auditory cortex.
WE selectively imaged the neural correlates of tinnitus, by contrasting a condition with no phantom auditory sensation with a condition during which tinnitus is present, using a rare form of tinnitus elicited by eye movements. Using positron emission tomography (PET), we demonstrate that phantom auditory sensation increases regional cerebral blood flow bilaterally in temporo-parietal association auditory areas but not in the primary auditory cortex. These results confirm that conscious perception does not necessarily require activation in primary areas and suggest that the perceptual qualities of tinnitus, e.g. intensity, frequency and spatial localization, are represented in temporo-parietal regions. Activation in these regions is compatible with cortical processing of ascending auditory messages generated at subcortical levels.
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Parallel Processing in the Auditory Cortex of Primates
Josef P. Rauschecker · Audiology and Neurotology · 1998 · 336 citations
Michael Wall, Michael A. Rosenberg, Donald E. Richardson · Neurology · 1987 · 39 citations