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杏仁核中的神经元集合允许社会信息来激励后续决策。

Neuronal Ensembles in the Amygdala Allow Social Information to Motivate Later Decisions.

机构信息

Department of Psychiatry, Yale University School of Medicine, New Haven, Connecticut 06510.

Department of Pediatrics, Emory University School of Medicine, Atlanta, Georgia 30322.

出版信息

J Neurosci. 2024 Apr 17;44(16):e1848232024. doi: 10.1523/JNEUROSCI.1848-23.2024.

Abstract

Social experiences carry tremendous weight in our decision-making, even when social partners are not present. To determine mechanisms, we trained female mice to respond for two food reinforcers. Then, one food was paired with a novel conspecific. Mice later favored the conspecific-associated food, even in the absence of the conspecific. Chemogenetically silencing projections from the prelimbic subregion (PL) of the medial prefrontal cortex to the basolateral amygdala (BLA) obstructed this preference while leaving social discrimination intact, indicating that these projections are necessary for socially driven choice. Further, mice that performed the task had greater densities of dendritic spines on excitatory BLA neurons relative to mice that did not. We next induced chemogenetic receptors in cells active during social interactions-when mice were encoding information that impacted later behavior. BLA neurons stimulated by social experience were necessary for mice to later favor rewards associated with social conspecifics but not make other choices. This profile contrasted with that of PL neurons stimulated by social experience, which were necessary for choice behavior in social and nonsocial contexts alike. The PL may convey a generalized signal allowing mice to favor particular rewards, while units in the BLA process more specialized information, together supporting choice motivated by social information.

摘要

社会经验在我们的决策中起着巨大的作用,即使没有社会伙伴在场也是如此。为了确定机制,我们训练雌性老鼠对两种食物奖励做出反应。然后,一种食物与一种新的同种动物配对。老鼠后来更喜欢与同种动物相关的食物,即使没有同种动物在场也是如此。化学遗传沉默内侧前额叶皮质的前扣带皮层(PL)到外侧杏仁核(BLA)的投射阻止了这种偏好,同时保持社交辨别力完好无损,表明这些投射对于社交驱动的选择是必要的。此外,执行任务的老鼠在兴奋性 BLA 神经元上的树突棘密度大于未执行任务的老鼠。我们接下来在社交互动期间(当老鼠编码信息影响后来的行为时)诱导化学遗传受体。社交经验刺激的 BLA 神经元对于老鼠后来喜欢与社交同类相关的奖励但不做出其他选择是必要的。这种情况与社交经验刺激的 PL 神经元形成对比,后者对于社交和非社交环境中的选择行为都是必要的。PL 可能传递一种通用信号,使老鼠能够偏爱特定的奖励,而 BLA 中的单元则处理更专业的信息,共同支持由社交信息驱动的选择。

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