Azimuth coding in primary auditory cortex of the cat. I. Spike synchrony versus spike count representations.
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Summary
The relatively poor performance of the population vector suggests that primary auditory cortex does not code sound azimuth by a globally distributed measure of peak firing rate or coincident firing, and that the information contained in the overall neural population does not increase compared with that contained in a firing rate representation.
- Type
- article
- Published
- 1998-10-01
- Cited by
- 42
- References
- 64
- OpenAlex
- https://openalex.org/W41094727
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:1407837
Keywords
Azimuth, Auditory cortex, Neural coding, Acoustics, Physics
References
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Cited by
- A Rate Code for Sound Azimuth in Monkey Auditory Cortex: Implications for Human Neuroimaging Studies
- Functional organization of the pallid bat auditory cortex: emphasis on binaural organization.
- Selectivity of Local Field Potentials in Macaque Inferior Temporal Cortex
- Systematic representation of sound locations in the primary auditory cortex
- The pre-movement component of motor cortical local field potentials reflects the level of expectancy.
- An in vivo investigation of first spike latencies in the inferior colliculus in response to multichannel penetrating auditory brainstem implant stimulation
- Functional specialization of medial auditory belt cortex in the alert rhesus monkey.
- Cognitive motor control: spatial and temporal aspects.
- Sensitivity of auditory cortical neurons to the locations of leading and lagging sounds.
- A comparison of neuron response properties in areas A1 and CM of the marmoset monkey auditory cortex: tones and broadband noise.
- The synaptic representation of sound source location in auditory cortex
- Stability of central binaural sound localization mechanisms in mammals, and the Heffner hypothesis.
- Latency represents sound frequency in mouse IC
- Temporal processing in sensory systems.
- Decoding first-spike latency: A likelihood approach
- Differences between the N1 waves of the responses to interaural time and intensity disparities: scalp topography and dipole sources.
- Azimuthal tuning of human perceptual channels for sound location.
- First spike latency and spike count as functions of tone amplitude and frequency in the inferior colliculus of mice.
- Comparison of direction and object selectivity of local field potentials and single units in macaque posterior parietal cortex during prehension.
- The effects of interaural time difference and intensity on the coding of low frequency sounds in the mammalian midbrain
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