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Explicit and implicit neural mechanisms for processing of social information from facial expressions: a functional magnetic resonance imaging study.

机译:从面部表情处理社交信息的显式和隐式神经机制:功能性磁共振成像研究。

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The processing of changing nonverbal social signals such as facial expressions is poorly understood, and it is unknown if different pathways are activated during effortful (explicit), compared to implicit, processing of facial expressions. Thus we used fMRI to determine which brain areas subserve processing of high-valence expressions and if distinct brain areas are activated when facial expressions are processed explicitly or implicitly. Nine healthy volunteers were scanned (1.5T GE Signa with ANMR, TE/TR 40/3,000 ms) during two similar experiments in which blocks of mixed happy and angry facial expressions ("on" condition) were alternated with blocks of neutral faces (control "off" condition). Experiment 1 examined explicit processing of expressions by requiring subjects to attend to, and judge, facial expression. Experiment 2 examined implicit processing of expressions by requiring subjects to attend to, and judge, facial gender, which was counterbalanced in both experimental conditions. Processing of facial expressions significantly increased regional blood oxygenation level-dependent (BOLD) activity in fusiform and middle temporal gyri, hippocampus, amygdalohippocampal junction, and pulvinar nucleus. Explicit processing evoked significantly more activity in temporal lobe cortex than implicit processing, whereas implicit processing evoked significantly greater activity in amygdala region. Mixed high-valence facial expressions are processed within temporal lobe visual cortex, thalamus, and amygdalohippocampal complex. Also, neural substrates for explicit and implicit processing of facial expressions are dissociable: explicit processing activates temporal lobe cortex, whereas implicit processing activates amygdala region. Our findings confirm a neuroanatomical dissociation between conscious and unconscious processing of emotional information.
机译:改变非语言社交信号(例如面部表情)的处理了解甚少,与隐式处理面部表情相比,在努力(显式)过程中是否激活了不同的途径是未知的。因此,我们使用功能磁共振成像来确定哪些大脑区域为高价表达的处理服务,以及在显式或隐式处理面部表情时是否激活了不同的大脑区域。在两个类似的实验中,对九名健康志愿者进行了扫描(1.5T GE Signa,具有ANMR,TE / TR 40 / 3,000 ms),其中高兴和愤怒的表情混合表情块(“处于”状态)与中性面孔的表情块(对照) “关闭”状态)。实验1通过要求受试者注意并判断面部表情来检查表情的显式处理。实验2通过要求受试者注意并判断面部性别来检查对表情的隐式处理,这在两种实验条件下都是平衡的。面部表情的处理显着增加了梭状和中颞回,海马,扁桃体海马体连接处和髓核的局部血液氧合水平依赖性(BOLD)活性。显性加工在颞叶皮质中诱发的活动明显大于隐性加工,而隐性加工在杏仁核区域诱发的活动明显更多。在颞叶视觉皮层,丘脑和杏仁核海马复合体中处理混合的高价面部表情。而且,用于面部表情的显式和隐式处理的神经基质是可分解的:显式处理激活颞叶皮层,而隐式处理激活杏仁核区域。我们的发现证实了有意识和无意识的情感信息处理之间的神经解剖学分离。

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