Order and disorder in auditory cortical maps.
Explore this paper's citation graph
Summary
It is suggested that several basic receptive field properties of neurons show non-uniform spatial distributions in the primary auditory cortex of cats and primates, suggesting a parallel coding scheme for processing sound information onto several superimposed cortical 'maps'.
- Type
- article
- Published
- 1995-08-01
- Cited by
- 96
- References
- 55
- OpenAlex
- https://openalex.org/W7488851
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:8662178
Keywords
Census, Census tract, Cancer, Demography, Geography
References
- Functional organization of sound direction and sound pressure level in primary auditory cortex of the cat.
- Auditory function : neurobiological bases of hearing
- Sensory processing in the mammalian brain : neural substrates and experimental strategies
- The neural basis of visual function
- Responses of neurons in auditory cortex of the macaque monkey to monaural and binaural stimulation.
- Role of cat primary auditory cortex for sound-localization behavior.
- Intrinsic organization of the cat's medial geniculate body identified by projections to binaural response-specific bands in the primary auditory cortex
- Geometry of orientation and ocular dominance columns in monkey striate cortex
- Functional topography of cat primary auditory cortex: distribution of integrated excitation.
- Plasticity in auditory cortical circuitry.
- Methodological considerations in mapping auditory cortex: binaural columns in AI of cat.
- Sensitivity of neurons in cat primary auditory cortex to tones and frequency-modulated stimuli. II: Organization of response properties along the 'isofrequency' dimension.
- A dimension reduction framework for understanding cortical maps
- Neural mapping and space-variant image processing
- Tonotopic organization in auditory cortex of the cat
- Intracortical connections and their physiological correlates in the primary auditory cortex (AI) of the cat
- A panoramic code for sound location by cortical neurons.
- Population responses to multifrequency sounds in the cat auditory cortex: one- and two-parameter families of sounds.
- Frequency representation in auditory cortex of the common marmoset (Callithrix jacchus jacchus)
- The Evolutionary Biology of Hearing
Cited by
- Azimuth coding in primary auditory cortex of the cat. I. Spike synchrony versus spike count representations.
- Bio-inspired broad-class phonetic labelling
- Apprentissage spatial de corrélations multimodales par des mécanismes d'inspiration corticale. (Spatial learning of multimodal correlations in a cortically inspired way)
- Feature topography and sound intensity level encoding in primary auditory cortex
- Comparative population analysis of cortical representations in parametric spaces of visual field and skin: a unifying role for nonlinear interactions as a basis for active information processing across modalities.
- Frequency selectivity measured both psychophysically and physiologically
- Learning of local predictable representations in partially learnable environments
- Functional organization of squirrel monkey primary auditory cortex: responses to pure tones.
- A computational framework for topographies of cortical areas
- SOMMA: Cortically inspired paradigms for multimodal processing
- Maps versus clusters: different representations of auditory space in the midbrain and forebrain.
- Properties of correlated neural activity clusters in cat auditory cortex resemble those of neural assemblies.
- Remodeling the cortex in memory: Increased use of a learning strategy increases the representational area of relevant acoustic cues
- Auditory brainstem projections to the ferret superior colliculus: Anatomical contribution to the neural coding of sound azimuth
- Instructed learning in the auditory localization pathway of the barn owl
- Functional topography of cat primary auditory cortex: response latencies
- Auditory system: a neural substrate for frequency selectivity?
- Time-frequency representations in speech perception
- Temporal coherence and attention in auditory scene analysis
- Principles of acoustic motion detection in animals and man.