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前额皮质在大鼠决策中的作用和性别差异。

The Role of the Rat Prefrontal Cortex and Sex Differences in Decision-Making.

机构信息

Department of Neuroscience, American University, Washington, DC 20016.

Department of Neuroscience, American University, Washington, DC 20016

出版信息

J Neurosci. 2024 Nov 13;44(46):e0550242024. doi: 10.1523/JNEUROSCI.0550-24.2024.

Abstract

The prefrontal cortex is critical for decision-making across species, with its activity linked to choosing between options. Drift diffusion models (DDMs) are commonly employed to understand the neural computations underlying this behavior. Studies exploring the specific roles of regions of the rodent prefrontal cortex in controlling the decision process are limited. This study explored the role of the prelimbic cortex (PLC) in decision-making using a two-alternative forced-choice task. Rats first learned to report the location of a lateralized visual stimulus. The brightness of the stimulus indicated its reward value. Then, the rats learned to make choices between pairs of stimuli. Sex differences in learning were observed, with females responding faster and more selectively to high-value stimuli than males. DDM analysis found that males had decreased decision thresholds during initial learning, whereas females maintained a consistently higher drift rate. Pharmacological manipulations revealed that PLC inactivation reduced the decision threshold for all rats, indicating that less information was needed to make a choice in the absence of normal PLC processing. μ-Opioid receptor stimulation of the PLC had the opposite effect, raising the decision threshold and reducing bias in the decision process toward high-value stimuli. These effects were observed without any impact on the rats' choice preferences. Our findings suggest that PLC has an inhibitory role in the decision process and regulates the amount of evidence that is required to make a choice. That is, PLC activity controls "when," but not "how," to act.

摘要

前额皮质对于跨物种的决策至关重要,其活动与在选项之间进行选择有关。漂移扩散模型(DDM)常用于理解这种行为背后的神经计算。探索啮齿动物前额皮质区域在控制决策过程中的特定作用的研究有限。本研究使用双选择强制选择任务探索了边缘前皮质(PLC)在决策中的作用。大鼠首先学会报告侧化视觉刺激的位置。刺激的亮度表示其奖励价值。然后,大鼠学会在成对的刺激之间做出选择。观察到学习中的性别差异,女性对高价值刺激的反应速度比男性更快,选择性更高。DDM 分析发现,男性在初始学习期间决策阈值降低,而女性的漂移率始终较高。药理学处理表明,PLC 失活降低了所有大鼠的决策阈值,表明在没有正常 PLC 处理的情况下,做出选择所需的信息量减少。PLC 中的 μ-阿片受体刺激产生了相反的效果,提高了决策阈值,并减少了决策过程中对高价值刺激的偏向。这些影响在不影响大鼠选择偏好的情况下观察到。我们的研究结果表明,PLC 在决策过程中起抑制作用,并调节做出选择所需的信息量。也就是说,PLC 活动控制“何时”,而不是“如何”行动。

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