Tonotopic organization of the human auditory cortex revealed by transient auditory evoked magnetic fields.
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Summary
The tonotopic organization of the human auditory cortex has been investigated by systematic measurements of magnetic fields evoked by tone-bursts with carrier frequencies of 250, 500, 1000, 2000 and 4000 Hz and suggest that the equivalent current dipoles of both the 100m and the 160m component are located in the transverse temporal gyri.
- Type
- article
- Published
- 1988-02-01
- Cited by
- 401
- References
- 26
- OpenAlex
- https://openalex.org/W2094586226
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:4558759
Keywords
Tonotopy, Auditory cortex, Dipole, Amplitude, Physics
References
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Cited by
- Tonotopic organization of human auditory cortex revealed by multi-channel SQUID system.
- Neuromagnetic evidence of an amplitopic organization of the human auditory cortex.
- Potentialities and prospects of neuromagnetic imaging: mapping of time and frequency domains of magnetic activity of the brain.
- Neuromagnetic studies of the lip area of primary somatosensory cortex in humans: evidence for an oscillotopic organization
- Electrical Sources of P300 Event-Related Brain Potentials Revealed by Low Resolution Electromagnetic Tomography
- The auditory evoked magnetic fields to very high frequency tones.
- Neuromagnetic responses reflect the temporal pitch change of regular interval sounds
- Maturation of CAEP in infants and children: a review.
- The topographic representation of periodicity pitch in the auditory cortex
- Corrélats électrophysiologiques de l'intégration des informations auditives et visuelles dans la perception intermodale chez l'homme
- Sound representations underlying the duration mismatch negativity (MMN) in a rapid dichotic listening task
- Perception audiovisuelle de la parole chez le sourd postlingual implanté cochléaire et le sujet normo-entendant : étude longitudinale psychophysique et neurofonctionnelle
- Clinical Physiological Significance of Intraoperative Evoked Potential Monitoring
- Auditory system: functional magnetic resonance imaging.
- Functional MRI of stimulus interference on auditory processing in normal listeners and tinnitus patients
- Mesure du développement de la capacité de discrimination auditive et visuelle chez des personnes malentendantes porteuses d’un implant cochléaire
- Multisensory processing in the human brain
- Methodological considerations for fMRI studies of pitch processing
- Magnetoencephalography : A New Window into the Functional Organization of the Cerebral Cortex
- Electromagnetic Correlates of Injury-Induced Auditory Cortical Plasticity : Implications for the Development and Maintenance of Subjective Tinnitus
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