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人类眶额皮质中奖励价值和风险编码的神经动力学。

The neural dynamics of reward value and risk coding in the human orbitofrontal cortex.

机构信息

1 Neuroeconomics, Reward and Decision-making Team, Cognitive Neuroscience Centre, CNRS UMR 5229, Bron 69675, France 2 Université Claude Bernard Lyon 1, Lyon 69100, France.

2 Université Claude Bernard Lyon 1, Lyon 69100, France 3 Neurological Hospital, Bron 69675, France.

出版信息

Brain. 2016 Apr;139(Pt 4):1295-309. doi: 10.1093/brain/awv409. Epub 2016 Jan 25.

Abstract

The orbitofrontal cortex is known to carry information regarding expected reward, risk and experienced outcome. Yet, due to inherent limitations in lesion and neuroimaging methods, the neural dynamics of these computations has remained elusive in humans. Here, taking advantage of the high temporal definition of intracranial recordings, we characterize the neurophysiological signatures of the intact orbitofrontal cortex in processing information relevant for risky decisions. Local field potentials were recorded from the intact orbitofrontal cortex of patients suffering from drug-refractory partial epilepsy with implanted depth electrodes as they performed a probabilistic reward learning task that required them to associate visual cues with distinct reward probabilities. We observed three successive signals: (i) around 400 ms after cue presentation, the amplitudes of the local field potentials increased with reward probability; (ii) a risk signal emerged during the late phase of reward anticipation and during the outcome phase; and (iii) an experienced value signal appeared at the time of reward delivery. Both the medial and lateral orbitofrontal cortex encoded risk and reward probability while the lateral orbitofrontal cortex played a dominant role in coding experienced value. The present study provides the first evidence from intracranial recordings that the human orbitofrontal cortex codes reward risk both during late reward anticipation and during the outcome phase at a time scale of milliseconds. Our findings offer insights into the rapid mechanisms underlying the ability to learn structural relationships from the environment.

摘要

眶额皮层已知携带与预期奖励、风险和体验结果相关的信息。然而,由于损伤和神经影像学方法的固有局限性,这些计算的神经动力学在人类中仍然难以捉摸。在这里,我们利用颅内记录的高时间分辨率,描述了完整眶额皮层在处理与风险决策相关信息时的神经生理特征。我们从接受植入深度电极的药物难治性部分性癫痫患者的完整眶额皮层中记录局部场电位,当他们执行需要将视觉线索与不同奖励概率相关联的概率奖励学习任务时。我们观察到三个连续的信号:(i)在提示呈现后约 400 毫秒,局部场电位的幅度随奖励概率增加;(ii)在奖励预期的晚期和结果阶段出现风险信号;(iii)在奖励传递时出现体验价值信号。内侧和外侧眶额皮层都对风险和奖励概率进行编码,而外侧眶额皮层在编码体验价值方面起着主导作用。本研究提供了来自颅内记录的第一个证据,表明人类眶额皮层在奖励预期的晚期和结果阶段以毫秒级的时间尺度编码奖励风险。我们的发现为从环境中学习结构关系的能力的快速机制提供了深入了解。

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