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Neural signals of vicarious extinction learning

机译:替代灭绝学习的神经信号

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摘要

Social transmission of both threat and safety is ubiquitous, but little is known about the neural circuitry underlying vicarious safety learning. This is surprising given that these processes are critical to flexibly adapt to a changeable environment. To address how the expression of previously learned fears can be modified by the transmission of social information, two conditioned stimuli (CS + s) were paired with shock and the third was not. During extinction, we held constant the amount of direct, non-reinforced, exposure to the CSs (i.e. direct extinction), and critically varied whether another individual—acting as a demonstrator—experienced safety (CS + vic safety) or aversive reinforcement (CS + vic reinf). During extinction, ventromedial prefrontal cortex (vmPFC) responses to the CS + vic reinf increased but decreased to the CS + vic safety. This pattern of vmPFC activity was reversed during a subsequent fear reinstatement test, suggesting a temporal shift in the involvement of the vmPFC. Moreover, only the CS + vic reinf association recovered. Our data suggest that vicarious extinction prevents the return of conditioned fear responses, and that this efficacy is reflected by diminished vmPFC involvement during extinction learning. The present findings may have important implications for understanding how social information influences the persistence of fear memories in individuals suffering from emotional disorders.
机译:威胁和安全的社会传播无处不在,但是对于替代性安全学习背后的神经回路知之甚少。鉴于这些过程对于灵活地适应多变的环境至关重要,因此这令人惊讶。为了解决如何通过传播社会信息来改变以前学到的恐惧的表达方式,将两个条件刺激(CS + s)与震惊配对,而将第三个条件刺激与配对配对。灭绝期间,我们保持直接,未经加固的CS暴露量不变(即直接灭绝),并且严格地改变了另一个人(作为示威者)是否经历过安全性(CS + vic安全)或厌恶性加固(CS + vic reinf)。在灭绝过程中,对CS + + vic reinf的腹膜前额叶皮层(vmPFC)反应增加,但对CS + + vic安全性降低。 vmPFC活动的这种模式在随后的恐惧恢复测试中被逆转,表明vmPFC参与的时间发生了变化。此外,只有CS ++ vic reinf协会恢复了。我们的数据表明,替代灭绝阻止了条件恐惧反应的返回,并且这种有效性反映在灭绝学习过程中vmPFC参与的减少。本发现可能对于理解社交信息如何影响情绪障碍个体的恐惧记忆的持久性具有重要意义。

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