The causal contributions of medial prefrontal cortex to value-based decisions in mice

Huriye Atilgan, C. Murphy, A. Kwan
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Abstract

Learning from experience is essential to the optimization of behavior. In particular, we learn from past choices and outcomes to infer the predicted values of the actions to be taken. Then based on the values, we may select an informed choice. However, despite the many neural correlates identified, we still do not have a clear picture for how values are computed and translated into informed behavior. Here, we trained head-fixed mice to perform a two-armed bandit task. Animals based their decisions on past choices and reinforcements, consistent with having an internal representation of action values. To determine the causal contributions of the medial prefrontal cortex, we tested the animals before and after an excitotoxic lesion of the medial secondary motor cortex (M2). We found that unilateral M2 lesion led to side-specific effects on the animal’s ability to learn from past choices. To quantify the decision-making process, we fitted the animal’s choice behavior with Q-learning models to extract learning parameters such as learning rate, forgetting rate, and inverse temperature. Altogether, the results provide insights into the causal involvement of mouse mM2 in value-based decision making.
内侧前额叶皮层对小鼠价值决策的因果作用
从经验中学习是优化行为的必要条件。特别是,我们从过去的选择和结果中学习,推断出将要采取的行动的预测值。然后根据这些值,我们可以选择一个知情的选择。然而,尽管发现了许多神经相关因素,我们仍然不清楚价值是如何被计算并转化为知情行为的。在这里,我们训练头部固定的老鼠执行双臂强盗任务。动物的决定是基于过去的选择和强化,这与它们对行动价值的内在表征是一致的。为了确定内侧前额叶皮层的因果关系,我们在内侧次级运动皮层(M2)兴奋性毒性损伤前后对动物进行了测试。我们发现,单侧M2损伤会对动物从过去的选择中学习的能力产生副作用。为了量化决策过程,我们用Q-learning模型拟合动物的选择行为,提取学习率、遗忘率和逆温度等学习参数。总之,这些结果为小鼠mM2在基于价值的决策中的因果关系提供了见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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