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Neurons in the Rat Anterior Cingulate Cortex Dynamically Encode Cost–Benefit in a Spatial Decision-Making Task

机译:大鼠前扣带回皮层中的神经元在空间决策任务中动态编码成本效益

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摘要

Optimal decision-making often requires an assessment of the costs and benefits associated with each available course of action. Previous studies have shown that lesions to the anterior cingulate cortex (ACC) impair cost–benefit decision-making in laboratory animals, but the neural mechanisms underlying the deficit are not well understood. We recorded from ACC neurons in freely moving rats as they performed a spatial decision-making task whereby, in the baseline configuration “2:6B,” rats could pursue two or six food pellets, the latter obtained by climbing a barrier [high cost, high reward (HCHR)]. In this configuration, the mean percentage of HCHR choices was 69 ± 4%, and a substantial portion of ACC neurons (63%) exhibited significantly higher firing for one goal trajectory versus the other; for 94% of these cells, higher firing was associated with the HCHR option. This HCHR bias was not simply attributable to the larger reward, the barrier, or behavioral preference. In intersession and intrasession manipulations involving at least one barrier (2:6B, 2B:6B, and 2:2B), ACC activity rapidly adapted and was consistently biased toward the economically advantageous option relative to the configuration. Interestingly, when only a difference in reward magnitude was presented (2:6, no barrier, HCHR choices of 84 ± 4%), ACC activity was minimal and nonbiased. One interpretation of our data is that the ACC encodes a relative, integrated cost–benefit representation of available choice options that is biased toward the “better” option in terms of effort/outcome ratio. This representation may be specifically recruited when an assessment of reward and effort is required to optimally perform a task.
机译:最佳决策通常需要评估与每个可用操作方案相关的成本和收益。先前的研究表明,前扣带回皮层(ACC)的损伤会损害实验动物的成本效益决策,但对这一缺陷背后的神经机制尚不甚了解。我们记录了自由移动大鼠在执行空间决策任务时从ACC神经元获得的信息,从而在基线配置“ 2:6B”中,大鼠可以追捕两个或六个食物颗粒,后者是通过爬上障碍物而获得的(高成本,高回报(HCHR)]。在这种配置下,HCHR选择的平均百分比为69±4%,ACC神经元的相当一部分(63%)对一个目标轨迹显示出比另一目标更高的放电。对于这些细胞中的94%,较高的发射与HCHR选项相关。这种HCHR偏见不仅仅归因于更大的报酬,障碍或行为偏好。在涉及至少一个障碍(2:6B,2B:6B和2:2B)的闭会期间和闭会期间操作中,ACC活动迅速适应并且相对于配置始终偏向于经济上有利的选择。有趣的是,当只给出奖励幅度的差异(2:6,没有障碍,HCHR选择为84±4%)时,ACC活动极少且无偏见。我们的数据的一种解释是,ACC对可用选择选项的相对,综合成本收益表示进行编码,该表示在工作量/结果比率方面偏向“更好”的选项。当需要对奖励和努力进行评估以最佳地执行任务时,可以专门招募该表示形式。

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