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人类和动物杏仁核中时间不可预测性的处理

Processing of temporal unpredictability in human and animal amygdala.

作者信息

Herry Cyril, Bach Dominik R, Esposito Fabrizio, Di Salle Francesco, Perrig Walter J, Scheffler Klaus, Lüthi Andreas, Seifritz Erich

机构信息

Friedrich Miescher Institute for Biomedical Research, 4058 Basel, Switzerland.

出版信息

J Neurosci. 2007 May 30;27(22):5958-66. doi: 10.1523/JNEUROSCI.5218-06.2007.

Abstract

The amygdala has been studied extensively for its critical role in associative fear conditioning in animals and humans. Noxious stimuli, such as those used for fear conditioning, are most effective in eliciting behavioral responses and amygdala activation when experienced in an unpredictable manner. Here, we show, using a translational approach in mice and humans, that unpredictability per se without interaction with motivational information is sufficient to induce sustained neural activity in the amygdala and to elicit anxiety-like behavior. Exposing mice to mere temporal unpredictability within a time series of neutral sound pulses in an otherwise neutral sensory environment increased expression of the immediate-early gene c-fos and prevented rapid habituation of single neuron activity in the basolateral amygdala. At the behavioral level, unpredictable, but not predictable, auditory stimulation induced avoidance and anxiety-like behavior. In humans, functional magnetic resonance imaging revealed that temporal unpredictably causes sustained neural activity in amygdala and anxiety-like behavior as quantified by enhanced attention toward emotional faces. Our findings show that unpredictability per se is an important feature of the sensory environment influencing habituation of neuronal activity in amygdala and emotional behavior and indicate that regulation of amygdala habituation represents an evolutionary-conserved mechanism for adapting behavior in anticipation of temporally unpredictable events.

摘要

杏仁核因其在动物和人类联想性恐惧条件反射中的关键作用而受到广泛研究。有害刺激,如用于恐惧条件反射的刺激,在以不可预测的方式经历时,最有效地引发行为反应和杏仁核激活。在这里,我们使用小鼠和人类的转化方法表明,不与动机信息相互作用的不可预测性本身就足以在杏仁核中诱导持续的神经活动并引发焦虑样行为。在其他方面均为中性的感觉环境中,让小鼠在一系列中性声脉冲的时间序列中仅暴露于时间上的不可预测性,会增加即刻早期基因c-fos的表达,并防止基底外侧杏仁核中单个神经元活动的快速习惯化。在行为水平上,不可预测而非可预测的听觉刺激会诱发回避和焦虑样行为。在人类中,功能磁共振成像显示,时间上的不可预测性会导致杏仁核中持续的神经活动以及焦虑样行为,这通过对情绪化面孔的注意力增强来量化。我们的研究结果表明,不可预测性本身是感觉环境的一个重要特征,它影响杏仁核中神经元活动的习惯化和情绪行为,并表明杏仁核习惯化的调节代表了一种进化保守机制,用于在预期时间上不可预测的事件时调整行为。

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