TY - JOUR
T1 - Population-vector analysis by primate prefrontal neuron activities
AU - Funahashi, S.
AU - Takeda, K.
PY - 2002
Y1 - 2002
N2 - The population-vector analysis was applied to visualize neuronal processes of sensory-to-motor transformation in the prefrontal cortex while two monkeys performed two types of oculomotor delayed-response (ODR) tasks. In a standard ODR task, monkeys were required to make a quick eye movement to where the visual cue had been presented 3 s before, whereas in R-ODR task, monkeys were required to make an eye movement 90° clockwise to the direction that the visual cue had been presented. In both tasks, directions of population vectors calculated from cue- and response-period activity were almost the same as cue directions and saccade directions, respectively, indicating that population vectors of cue- and response-period activity represent information of visual inputs and motor outputs, respectively. To visualize neuronal processes of information transformation, population vectors were calculated every 250 ms during a whole trial. In ODR task, population vectors were directed the same direction as the cue direction during the delay period. However, in R-ODR task, population vector rotated gradually from the direction similar to the cue direction to the saccade direction during the delay period. These results indicate that visual-to-motor transformation occurs during the delay period and that this process can be visualized by the population-vector analysis.
AB - The population-vector analysis was applied to visualize neuronal processes of sensory-to-motor transformation in the prefrontal cortex while two monkeys performed two types of oculomotor delayed-response (ODR) tasks. In a standard ODR task, monkeys were required to make a quick eye movement to where the visual cue had been presented 3 s before, whereas in R-ODR task, monkeys were required to make an eye movement 90° clockwise to the direction that the visual cue had been presented. In both tasks, directions of population vectors calculated from cue- and response-period activity were almost the same as cue directions and saccade directions, respectively, indicating that population vectors of cue- and response-period activity represent information of visual inputs and motor outputs, respectively. To visualize neuronal processes of information transformation, population vectors were calculated every 250 ms during a whole trial. In ODR task, population vectors were directed the same direction as the cue direction during the delay period. However, in R-ODR task, population vector rotated gradually from the direction similar to the cue direction to the saccade direction during the delay period. These results indicate that visual-to-motor transformation occurs during the delay period and that this process can be visualized by the population-vector analysis.
KW - Delay-period activity
KW - Directional selectivity
KW - Information transformation
KW - Monkey
KW - Population vector
KW - Prefrontal cortex
KW - Single-neuron activity
KW - Spatial working memory
UR - https://www.scopus.com/pages/publications/0036034574
U2 - 10.1023/A:1020309916014
DO - 10.1023/A:1020309916014
M3 - Article
AN - SCOPUS:0036034574
SN - 0092-0606
VL - 28
SP - 527
EP - 537
JO - Journal of Biological Physics
JF - Journal of Biological Physics
IS - 3
ER -