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R Zatorre

Publications and source records attributed to R Zatorre.

5 recordsLinked to original sources

Cortical deafness to dissonance.

Ordinary listeners, including infants, easily distinguish consonant from dissonant pitch combinations and consider the former more pleasant than the latter. The preference for consonance over dissonance was tested in a patient, I.R., who suffers from music perception and memory disorders as a result of bilateral lesions to the auditory cortex. In Experiment 1, I.R. was found to be unable to distinguish consonant from dissonant versions of musical excerpts taken from the classical repertoire by rating their pleasantness. I.R.'s indifference to dissonance was not due to a loss of all affective responses to music, however, since she rated the same excerpts as happy or sad, as normal controls do. In Experiment 2, I.R.'s lack of responsiveness to varying degrees of dissonance was replicated with chord sequences which had been used in a previous study using PET, in examining emotional responses to dissonance. A CT scan of I.R.'s brain was co-registered with the PET activation data from normal volunteers. Comparison of I.R.'s scan with the PET data revealed that the damaged areas overlapped with the regions identified to be involved in the perceptual analysis of the musical input, but not with the paralimbic regions involved in affective responses. Taken together, the findings suggest that dissonance may be computed bilaterally in the superior temporal gyri by specialized mechanisms prior to its emotional interpretation.

Adult↗

Functional imaging of cerebral arteriovenous malformations with a comment on cortical reorganization.

Functional brain imaging is poised to become a standard diagnostic tool. The authors review their experience using functional positron emission tomography (fPET) in patients with cerebral arteriovenous malformations (AVMs). Twelve patients, three males and nine females aged 16 to 30 years, 11 with a cerebral AVM and one with a cavernous angioma, of which five were located in the central area and seven in a speech region, underwent fPET and three-dimensional magnetic resonance imaging. These studies were coregistered in stereotactic space and correlated to Brodmann's areas that were identified from the atlas of Talairach and Tournoux. Vibrotactile and/or motor stimulation of the contralateral hand were used to identify the central region in patients whose AVM resided within, or close to, the motor strip, and language tasks specifically designed to activate visual, auditory, expressive, or semantic language were used in patients whose AVM resided within, or close to, Broca's or Wernicke's areas. Somatosensory and motor activation reliably identified the central region in all cases as validated by identification of Brodmann's areas and by intraoperative cortical mapping, which was performed with the patient under local anesthesia. Similarly, language tasks accurately lateralized major language function to one hemisphere concordantly with neuropsychological assessment, including dichotic listening and intracarotid Amytal tests, and localized language areas appropriately as verified by stereotactic coordinates. Functional cerebral imaging is feasible in patients with structural brain lesions. It is a reliable method to identify the relationship of a cerebral AVM to the central region. The determination of a similar relationship to language areas is dependent on the development and further validation of language-based tasks designed to activate visual, auditory, expressive, and semantic aspects of language specific to particular sites within the anterior and posterior speech regions.

Journal Article↗

Functional PET scanning in the preoperative assessment of cerebral arteriovenous malformations.

We have evaluated positron emission tomography (PET) scanning during sensory stimulation or during the performance of auditory, visually based or expressive language tasks (activation PET scanning) to determine its reliability in establishing the relationships of cerebral arteriovenous malformations (AVMs) to the ambient cortex in 10 patients. Five patients with a central AVM underwent activation PET scanning combined with three-dimensional MRI during vibrotactile stimulation of the contralateral hand, and 5 patients with AVMs in or around speech areas were similarly scanned during a language task. Vibrotactile stimulation identified the post-central gyrus, establishing the relationship of the AVM to the central region. The results of language activation were specific to the modality (visual, auditory, articulate) on which the task was based. Sensory PET activation scanning is reliable in identifying the pre- and post-central gyri and useful in assessing AVMs in and around the central region. A greater understanding of results in normal controls for specific visual, auditory, and expressive language tasks is necessary before language activation PET scanning can be confidently applied to clinical cases.

Brain↗