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Brain morphology correlates of interindividual differences in conditioned fear acquisition and extinction learning

机译:脑形态学与条件恐惧获取和消亡学习中个体差异的相关性

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The neural circuits underlying fear learning have been intensively investigated in pavlovian fear conditioning paradigms across species. These studies established a predominant role for the amygdala in fear acquisition, while the ventromedial prefrontal cortex (vmPFC) has been shown to be important in the extinction of conditioned fear. However, studies on morphological correlates of fear learning could not consistently confirm an association with these structures. The objective of the present study was to investigate if interindividual differences in morphology of the amygdala and the vmPFC are related to differences in fear acquisition and extinction learning in humans. We performed structural magnetic resonance imaging in 68 healthy participants who underwent a differential cued fear conditioning paradigm. Volumes of subcortical structures as well as cortical thickness were computed by the semi-automated segmentation software Freesurfer. Stronger acquisition of fear as indexed by skin conductance responses was associated with larger right amygdala volume, while the degree of extinction learning was positively correlated with cortical thickness of the right vmPFC. Both findings could be conceptually replicated in an independent sample of 53 subjects. The data complement our understanding of the role of human brain morphology in the mechanisms of the acquisition and extinction of conditioned fear.
机译:恐惧学习背后的神经回路已在跨物种的帕夫洛夫式恐惧条件范式中进行了深入研究。这些研究确立了杏仁核在恐惧获得中的主要作用,而腹侧前额叶皮层(vmPFC)已被证明在消除条件性恐惧中很重要。然而,关于恐惧学习的形态学关联的研究不能始终如一地证实与这些结构的关联。本研究的目的是研究杏仁核和vmPFC的个体形态差异是否与人类恐惧获取和灭绝学习的差异有关。我们对68位健康的参与者进行了结构磁共振成像,这些参与者接受了不同的恐惧条件调节范例。通过半自动分割软件Freesurfer计算皮层下结构的体积以及皮层厚度。以皮肤电导反应为指标的恐惧获得性增强与右杏仁核体积更大有关,而消光学习程度与右vmPFC的皮层厚度正相关。这两个发现可以在概念上复制到53位受试者的独立样本中。数据补充了我们对人脑形态在条件性恐惧的获取和消退机制中的作用的理解。

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