Funahashi S, Takeda K
J Biol Phys. 2002 Sep;28(3):527-37. doi: 10.1023/A:1020309916014.
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 thevisual cue had been presented 3 s before, whereas in R-ODR task, monkeys wererequired 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 weredirected 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-vectoranalysis.
在两只猴子执行两种类型的眼球运动延迟反应(ODR)任务时,应用群体向量分析来可视化前额叶皮层中感觉运动转换的神经元过程。在标准ODR任务中,猴子需要快速将眼睛移向3秒前视觉提示出现的位置,而在R-ODR任务中,猴子需要将眼睛顺时针移动90度到视觉提示出现的方向。在这两个任务中,从提示期和反应期活动计算出的群体向量方向分别与提示方向和扫视方向几乎相同,这表明提示期和反应期活动的群体向量分别代表视觉输入和运动输出的信息。为了可视化信息转换的神经元过程,在整个试验过程中每250毫秒计算一次群体向量。在ODR任务中,延迟期内群体向量的方向与提示方向相同。然而,在R-ODR任务中,延迟期内群体向量从与提示方向相似的方向逐渐旋转到扫视方向。这些结果表明,视觉运动转换发生在延迟期,并且这个过程可以通过群体向量分析来可视化。