TY - JOUR
T1 - Representation of the temporal order of visual objects in the primate lateral prefrontal cortex
AU - Ninokura, Yoshihisa
AU - Mushiake, Hajime
AU - Tanji, Jun
PY - 2003/5/1
Y1 - 2003/5/1
N2 - Recollecting a past episode involves remembering the temporal order of events. We studied cellular activity in the lateral prefrontal cortex (PFC) of two monkeys that were required to remember the temporal order in which visual objects appeared and to reach for each object in the same order after a delay. Here, we report the cellular activity in the lateral PFC, focusing on the delay period. We found that 43% of the delay-period activity was selective for the sequence in which the visual objects were presented during the cue period. While the majority of cellular activity was selective for multiple sequences, some cells (31%) were selective for only one of six sequences. Our findings show that PFC cells are involved in holding temporal order information when that information is necessary for planning forthcoming motor behavior.
AB - Recollecting a past episode involves remembering the temporal order of events. We studied cellular activity in the lateral prefrontal cortex (PFC) of two monkeys that were required to remember the temporal order in which visual objects appeared and to reach for each object in the same order after a delay. Here, we report the cellular activity in the lateral PFC, focusing on the delay period. We found that 43% of the delay-period activity was selective for the sequence in which the visual objects were presented during the cue period. While the majority of cellular activity was selective for multiple sequences, some cells (31%) were selective for only one of six sequences. Our findings show that PFC cells are involved in holding temporal order information when that information is necessary for planning forthcoming motor behavior.
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U2 - 10.1152/jn.00647.2002
DO - 10.1152/jn.00647.2002
M3 - Article
C2 - 12740417
AN - SCOPUS:0037879210
SN - 0022-3077
VL - 89
SP - 2868
EP - 2873
JO - Journal of Neurophysiology
JF - Journal of Neurophysiology
IS - 5
ER -