Neuroscience Research Center, Shahid Beheshti University of Medical Sciences, School of Medicine, Tehran, Iran.
Laser and Plasma Research Institute, Shahid Beheshti University, Tehran, Iran.
Neurobiol Learn Mem. 2020 Nov;175:107320. doi: 10.1016/j.nlm.2020.107320. Epub 2020 Sep 30.
Optimal decision making reflects the ability to choose the most advantageous option for various alternatives so that the anterior cingulate cortex is an important area involved in effort-based decision making. The current study aimed to investigate the functional connectivity between the ACC (anterior cingulate cortex) and the orbitofrontal cortex (OFC) during effort-based decision-making. A T-maze decision-making task with different rewards (large vs. small reward) and costs (high vs. low effort) was used, and simultaneously, local field potentials (LFP) from the ACC and OFC were also recorded in male Wistar rats. During the effort-based decision making, when the animals preferred the higher over, the lower reward, neural synchronization was observed in theta/low beta (4-20 Hz) frequency bands between both of the areas. Also, neural synchronization was not significant when the animals chose a lower reward. High gamma (80-100 Hz) synchrony between the areas was also observed; however, it was not dependent on the animal's decision. In this regard, the present findings revealed that neural synchronization and functional connectivity between the ACC and OFC in the low-frequency range (theta/low beta) is essential during the effort-based decision making.
最优决策反映了对各种备选方案选择最有利选项的能力,因此,前扣带皮层是参与基于努力的决策的一个重要区域。本研究旨在探讨努力决策过程中 ACC(前扣带皮层)和 OFC(眶额皮层)之间的功能连接。使用 T 迷宫决策任务,具有不同奖励(大奖励与小奖励)和成本(高努力与低努力),同时记录雄性 Wistar 大鼠的 ACC 和 OFC 的局部场电位 (LFP)。在基于努力的决策过程中,当动物更喜欢高奖励而非低奖励时,两个区域之间的θ/低β(4-20 Hz)频段观察到神经同步。当动物选择低奖励时,神经同步不显著。还观察到两个区域之间的高γ(80-100 Hz)同步;然而,它不依赖于动物的决策。在这方面,本研究结果表明,在基于努力的决策过程中,ACC 和 OFC 之间的低频范围(θ/低β)的神经同步和功能连接是必不可少的。