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Encoding predictive reward value in human amygdala and orbitofrontal cortex

机译:编码人类杏仁核和眶额皮质的预测奖励价值

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Adaptive behavior is optimized in organisms that maintain flexible representations of the value of sensory-predictive cues. To identify central representations of predictive reward value in humans, we used reinforcer devaluation while measuring neural activity with functional magnetic resonance imaging. We presented two arbitrary visual stimuli, both before and after olfactory devaluation, in a paradigm of appetitive conditioning. In amygdala and orbitofrontal cortex, responses evoked by a predictive target stimulus were decreased after devaluation, whereas responses to the nondevalued stimulus were maintained. Thus, differential activity in amygdala and orbitofrontal cortex encodes the current value of reward representations accessible to predictive cues. [References: 28]
机译:适应性行为在保持感觉预测线索价值的灵活表示的生物体中得到了优化。为了确定人类预测性奖励价值的主要表现形式,我们在使用功能性磁共振成像测量神经活动时使用了增强器贬值。我们提出了两种任意的视觉刺激,分别是在嗅觉贬值之前和之后的开胃条件下。在杏仁核和眶额皮质中,由预测目标刺激引起的反应在贬值后减少,而对未贬值刺激的反应得以维持。因此,杏仁核和眶额叶皮层中的差异活动编码了预测提示可获得的奖励表示的当前值。 [参考:28]

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