Tsujimoto Satoshi, Genovesio Aldo
Kyoto University.
Nielsen Consumer Neuroscience, Tokyo, Japan.
J Cogn Neurosci. 2017 Jan;29(1):25-36. doi: 10.1162/jocn_a_01036. Epub 2016 Sep 14.
In previous reports, we described neuronal activity in the polar (PFp), dorsolateral (PFdl), and orbital (PFo) PFC as monkeys performed a cued strategy task with two spatial goals. On each trial, a cue instructed one of two strategies: Stay with the previous goal or shift to the alternative. A delay period followed each cue, and feedback followed each choice, also at a delay. Our initial analysis showed that the mean firing rate of a population of PFp cells encoded the goal chosen on a trial, but only near the time of feedback, not earlier in the trial. In contrast, PFdl cells encoded goals and strategies during the cue and delay periods, and PFo cells encoded strategies in those task periods. Both areas also signaled goals near feedback time. Here we analyzed trial-to-trial variability of neuronal firing, as measured by the Fano factor (FF): the ratio of variance to the mean. Goal-selective PFp neurons had two properties: (1) a lower FF from the beginning of the trial compared with PFp cells that did not encode goals and (2) a weak but significant inverse correlation between FF throughout a trial and the degree of goal selectivity at feedback time. Cells in PFdl and PFo showed neither of these properties. Our findings indicate that goal-selective PFp neurons were engaged in the task throughout a trial, although they only encoded goals near feedback time. Their lower FF could improve the ability of other cortical areas to decode its selected-goal signal.
在之前的报告中,我们描述了猴子在执行具有两个空间目标的线索策略任务时,前额叶皮质的极区(PFp)、背外侧区(PFdl)和眶区(PFo)的神经元活动。在每次试验中,一个线索指示两种策略之一:保持之前的目标或转向另一个目标。每个线索之后有一个延迟期,每个选择之后也有反馈,同样有延迟。我们最初的分析表明,一群PFp细胞的平均放电率编码了试验中选择的目标,但仅在反馈时间附近,而不是在试验早期。相比之下,PFdl细胞在线索期和延迟期编码目标和策略,PFo细胞在这些任务期编码策略。这两个区域在反馈时间附近也发出目标信号。在这里,我们分析了神经元放电的逐次试验变异性,通过Fano因子(FF)来衡量:方差与均值的比率。目标选择性PFp神经元有两个特性:(1)与不编码目标的PFp细胞相比,从试验开始时FF较低;(2)在整个试验中FF与反馈时目标选择性程度之间存在微弱但显著的负相关。PFdl和PFo中的细胞均未表现出这些特性。我们的研究结果表明,目标选择性PFp神经元在整个试验中都参与了任务,尽管它们仅在反馈时间附近编码目标。它们较低的FF可以提高其他皮质区域解码其选择目标信号的能力。