Psychology Department, Indiana University-Purdue University, Indianapolis, Indiana 46202.
Neuroscience, EPFL Center for Neuroprosthetics, Lausanne 1015, Switzerland.
eNeuro. 2024 Nov 18;11(11). doi: 10.1523/ENEURO.0379-24.2024. Print 2024 Nov.
Impulsive individuals excessively discount the value of delayed rewards, and this is thought to reflect deficits in brain regions critical for impulse control such as the anterior cingulate cortex (ACC). Delay discounting (DD) is an established measure of cognitive impulsivity, referring to the devaluation of rewards delayed in time. This study used male Wistar rats performing a DD task to test the hypothesis that neural activity states in ACC ensembles encode strategies that guide decision-making. Optogenetic silencing of ACC neurons exclusively increased impulsive choices at the 8 s delay by increasing the number of consecutive low-value, immediate choices. In contrast to shorter delays where animals preferred the delay option, no immediate or delay preference was detected at 8 s. These data suggest that ACC was critical for decisions requiring more deliberation between choice options. To address the role of ACC in this process, large-scale multiple single-unit recordings were performed and revealed that 4 and 8 s delays were associated with procedural versus deliberative neural encoding mechanisms, respectively. The 4 and 8 s delay differed in encoding of strategy corresponding to immediate and delay run termination. Specifically, neural ensemble states at 4 s were relatively stable throughout the choice but exhibited temporal evolution in state space during the choice epoch that resembled ramping during the 8 s delay. Collectively, these findings indicate that ensemble states in ACC facilitate strategies that guide decision-making, and impulsivity increases with disruptions of deliberative encoding mechanisms.
冲动的个体过度低估延迟奖励的价值,这被认为反映了冲动控制关键脑区(如前扣带皮层)的缺陷。延迟折扣(DD)是衡量认知冲动性的一种既定方法,指的是随时间推移而奖励贬值。本研究使用雄性 Wistar 大鼠进行 DD 任务,以检验以下假设:ACC 集合中的神经活动状态编码了指导决策的策略。仅通过增加连续低价值即时选择的数量,对 ACC 神经元进行光遗传学沉默会特别增加 8 秒延迟时的冲动选择。与动物更喜欢延迟选项的较短延迟不同,在 8 秒时没有检测到即时或延迟偏好。这些数据表明,ACC 对于需要在选择选项之间进行更多思考的决策至关重要。为了解决 ACC 在这个过程中的作用,进行了大规模的多个单细胞记录,并揭示了 4 和 8 秒延迟分别与程序和深思熟虑的神经编码机制相关。4 和 8 秒延迟在对应于即时和延迟运行终止的策略编码上存在差异。具体来说,4 秒时的神经集合状态在整个选择过程中相对稳定,但在选择时期的状态空间中表现出时间演化,类似于 8 秒延迟时的斜坡。总的来说,这些发现表明,ACC 中的集合状态有助于指导决策的策略,而冲动性会随着深思熟虑的编码机制的破坏而增加。