Nash Family Department of Neuroscience, Lipschultz Center for Cognitive Neuroscience and Friedman Brain Institute, Icahn School of Medicine at Mount Sinai, New York, NY 10029, USA.
Curr Biol. 2024 Oct 7;34(19):4526-4538.e5. doi: 10.1016/j.cub.2024.08.034. Epub 2024 Sep 17.
Macaque ventral frontal cortex is composed of a set of anatomically heterogeneous and highly interconnected areas. Collectively, these areas have been implicated in many higher-level affective and cognitive processes, most notably the adaptive control of decision-making. Despite this appreciation, little is known about how subdivisions of ventral frontal cortex dynamically interact with each other during decision-making. Here, we assessed functional interactions between areas by analyzing the activity of thousands of single neurons recorded from eight anatomically defined subdivisions of ventral frontal cortex in macaques performing a visually guided two-choice probabilistic task for different fruit juices. We found that the onset of stimuli and reward delivery globally increased communication between all parts of ventral frontal cortex. Inter-areal communication was, however, temporally specific, occurred through unique activity subspaces between areas, and depended on the encoding of decision variables. In particular, areas 12l and 12o showed the highest connectivity with other areas while being more likely to receive information from other parts of ventral frontal cortex than to send it. This pattern of functional connectivity suggests a role for these two areas in integrating diverse sources of information during decision processes. Taken together, our work reveals the specific patterns of inter-areal communication between anatomically connected subdivisions of ventral frontal cortex that are dynamically engaged during decision-making.
猕猴腹侧前额皮质由一组在解剖上不同且高度相互连接的区域组成。这些区域共同参与了许多高级情感和认知过程,尤其是决策的适应性控制。尽管有这种认识,但对于腹侧前额皮质的细分区域在决策过程中如何动态相互作用,人们知之甚少。在这里,我们通过分析在猕猴执行视觉引导的两种选择概率任务时从腹侧前额皮质的八个解剖定义细分区域记录的数千个单个神经元的活动,评估了各区域之间的功能相互作用。我们发现,刺激的开始和奖励的传递全局增加了腹侧前额皮质所有部分之间的通信。然而,区域间的通信在时间上是特定的,通过区域之间的独特活动子空间发生,并且取决于决策变量的编码。特别是,12l 和 12o 区与其他区域的连接性最高,而它们更有可能从腹侧前额皮质的其他部分接收信息,而不是发送信息。这种功能连接模式表明这两个区域在决策过程中整合不同来源的信息方面发挥作用。总之,我们的工作揭示了在决策过程中动态参与的腹侧前额皮质解剖连接细分区域之间的特定区域间通信模式。