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首页> 外文期刊>NeuroImage >Detecting fearful and neutral faces: BOLD latency differences in amygdala-hippocampal junction.
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Detecting fearful and neutral faces: BOLD latency differences in amygdala-hippocampal junction.

机译:检测恐惧和中性的脸:杏仁核-海马体连接处的BOLD潜伏期差异。

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摘要

Evolutionary survival and procreation are augmented if an individual organism quickly detects environmental threats and rapidly initiates defensive behavioral reactions. Thus, facial emotions signaling a potential threat, e.g., fear or anger, should be perceived rapidly and automatically, possibly through a subcortical processing route which includes the amygdala. Using event-related functional magnetic resonance imaging (fMRI), we investigated the time course of the response in the amygdala to neutral and fearful faces, which appear from dynamically decreasing random visual noise. We aimed to detect differences of the amygdala response between fearful and neutral faces by estimating the latency of the blood oxygenation level-dependent (BOLD) response. We found that bilateral amygdala-hippocampal junction activation occurred earlier for fearful than for neutral faces. Our findings support the theory of a dual route architecture in which the subcortical thalamic-hippocampal-amygdala route serves fast preconscious threat perception.
机译:如果单个生物体迅速检测到环境威胁并迅速启动防御性行为反应,则进化生存和繁殖将得到增强。因此,可能通过包括杏仁核在内的皮层下加工途径,迅速而自动地感知发信号表示潜在威胁,例如恐惧或愤怒的面部情绪。使用事件相关的功能磁共振成像(fMRI),我们研究了杏仁核对中性和恐惧面孔的反应的时间过程,这些反应是动态降低随机视觉噪声而出现的。我们旨在通过估计血液氧合水平依赖性(BOLD)反应的潜伏期来检测恐惧面孔和中性面孔之间杏仁核反应的差异。我们发现,双侧杏仁核-海马体连接激活发生的时间比中性面孔更早。我们的发现支持双路径体系结构的理论,其中皮层下丘脑-海马-杏仁核途径可提供快速的前意识威胁感知。

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