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Selectivity of Local Field Potentials in Macaque Inferior Temporal Cortex

dc.date.accessioned2005-12-19T23:29:04Z
dc.date.accessioned2018-11-24T10:23:52Z
dc.date.available2005-12-19T23:29:04Z
dc.date.available2018-11-24T10:23:52Z
dc.date.issued2004-09-21
dc.identifier.urihttp://hdl.handle.net/1721.1/30417
dc.identifier.urihttp://repository.aust.edu.ng/xmlui/handle/1721.1/30417
dc.description.abstractWhile single neurons in inferior temporal (IT) cortex show differential responses to distinct complex stimuli, little is known about the responses of populations of neurons in IT. We recorded single electrode data, including multi-unit activity (MUA) and local field potentials (LFP), from 618 sites in the inferior temporal cortex of macaque monkeys while the animals passively viewed 78 different pictures of complex stimuli. The LFPs were obtained by low-pass filtering the extracellular electrophysiological signal with a corner frequency of 300 Hz. As reported previously, we observed that spike counts from MUA showed selectivity for some of the pictures. Strikingly, the LFP data, which is thought to constitute an average over large numbers of neurons, also showed significantly selective responses. The LFP responses were less selective than the MUA responses both in terms of the proportion of selective sites as well as in the selectivity of each site. We observed that there was only little overlap between the selectivity of MUA and LFP recordings from the same electrode. To assess the spatial organization of selective responses, we compared the selectivity of nearby sites recorded along the same penetration and sites recorded from different penetrations. We observed that MUA selectivity was correlated on spatial scales up to 800 m while the LFP selectivity was correlated over a larger spatial extent, with significant correlations between sites separated by several mm. Our data support the idea that there is some topographical arrangement to the organization of selectivity in inferior temporal cortex and that this organization may be relevant for the representation of object identity in IT.
dc.format.extent1 p.
dc.format.extent154663209 bytes
dc.format.extent29794050 bytes
dc.language.isoen_US
dc.subjectAI
dc.subjectobject recognition
dc.subjectinferior temporal cortex
dc.subjectlocal field potentials
dc.titleSelectivity of Local Field Potentials in Macaque Inferior Temporal Cortex


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