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基于单试次地形图 EEG 分析的探索性决策的时间进程。

The timing of exploratory decision-making revealed by single-trial topographic EEGanalyses.

机构信息

Electroencephalography Brain Mapping Core, Center for Biomedical Imaging of Lausanne and Geneva, Switzerland.

出版信息

Neuroimage. 2012 May 1;60(4):1959-69. doi: 10.1016/j.neuroimage.2012.01.136. Epub 2012 Feb 8.

DOI:10.1016/j.neuroimage.2012.01.136
PMID:22342874
Abstract

Decision-making in an uncertain environment is driven by two major needs: exploring the environment to gather information or exploiting acquired knowledge to maximize reward. The neural processes underlying exploratory decision-making have been mainly studied by means of functional magnetic resonance imaging, overlooking any information about the time when decisions are made. Here, we carried out an electroencephalography (EEG) experiment, in order to detect the time when the brain generators responsible for these decisions have been sufficiently activated to lead to the next decision. Our analyses, based on a classification scheme, extract time-unlocked voltage topographies during reward presentation and use them to predict the type of decisions made on the subsequent trial. Classification accuracy, measured as the area under the Receiver Operator's Characteristic curve was on average 0.65 across 7 subjects. Classification accuracy was above chance levels already after 516 ms on average, across subjects. We speculate that decisions were already made before this critical period, as confirmed by a positive correlation with reaction times across subjects. On an individual subject basis, distributed source estimations were performed on the extracted topographies to statistically evaluate the neural correlates of decision-making. For trials leading to exploration, there was significantly higher activity in dorsolateral prefrontal cortex and the right supramarginal gyrus; areas responsible for modulating behavior under risk and deduction. No area was more active during exploitation. We show for the first time the temporal evolution of differential patterns of brain activation in an exploratory decision-making task on a single-trial basis.

摘要

在不确定的环境中进行决策主要受两种需求驱动

探索环境以获取信息,或利用已获得的知识来最大化回报。探索性决策的神经过程主要通过功能磁共振成像来研究,而忽略了关于决策时间的任何信息。在这里,我们进行了一项脑电图 (EEG) 实验,以便检测负责这些决策的大脑发生器何时被充分激活以导致下一个决策。我们的分析基于分类方案,在奖励呈现期间提取时间锁定的电压地形图,并使用它们来预测随后试验中做出的决策类型。在 7 名受试者中,分类准确性(以接收器操作特性曲线下的面积衡量)平均为 0.65。平均而言,在 516 毫秒后,分类准确性就超过了机会水平。我们推测,正如跨受试者的反应时间的正相关所证实的那样,在这个关键时期之前,决策就已经做出了。在个体受试者的基础上,对提取的地形图进行分布式源估计,以统计评估决策的神经相关性。对于导致探索的试验,背外侧前额叶皮层和右侧缘上回的活动明显更高;这些区域负责在风险和推理下调节行为。在利用期没有任何区域更活跃。我们首次在单次试验的基础上展示了探索性决策任务中大脑激活的差异模式的时间演变。

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