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Auditory modulation of the inferior temporal cortex neurons in rhesus monkey
Kaposvári P, Csibri P, Csete G, Tompa T, Sáry G.
Jazyk angličtina Země Česko
NLK
Directory of Open Access Journals
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ProQuest Central
od 2005-01-01
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Nursing & Allied Health Database (ProQuest)
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ROAD: Directory of Open Access Scholarly Resources
od 1998
- MeSH
- akustická stimulace metody využití MeSH
- experimenty na zvířatech MeSH
- financování organizované MeSH
- Haplorrhini MeSH
- implantované elektrody využití MeSH
- Macaca mulatta MeSH
- metaanalýza jako téma MeSH
- mozková kůra anatomie a histologie fyziologie MeSH
- neurony fyziologie MeSH
- sluchové evokované potenciály fyziologie MeSH
- sluchové korové centrum anatomie a histologie fyziologie MeSH
- statistika jako téma MeSH
- světelná stimulace metody MeSH
We performed a systematic study to check whether neurons in the area TE (the anterior part of inferotemporal cortex) in rhesus monkey, regarded as the last stage of the ventral visual pathway, could be modulated by auditory stimuli. Two fixating rhesus monkeys were presented with visual, auditory or combined audiovisual stimuli while neuronal responses were recorded. We have found that the visually sensitive neurons are also modulated by audiovisual stimuli. This modulation is manifested as the change of response rate. Our results have shown also that the visual neurons were responsive to the sole auditory stimuli. Therefore, the concept of inferotemporal cortex unimodality in information processing should be re-evaluated.
Citace poskytuje Crossref.org
Lit.: 21
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- $a We performed a systematic study to check whether neurons in the area TE (the anterior part of inferotemporal cortex) in rhesus monkey, regarded as the last stage of the ventral visual pathway, could be modulated by auditory stimuli. Two fixating rhesus monkeys were presented with visual, auditory or combined audiovisual stimuli while neuronal responses were recorded. We have found that the visually sensitive neurons are also modulated by audiovisual stimuli. This modulation is manifested as the change of response rate. Our results have shown also that the visual neurons were responsive to the sole auditory stimuli. Therefore, the concept of inferotemporal cortex unimodality in information processing should be re-evaluated.
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