首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Effects of parametrical and trial-to-trial variation in prior probability processing revealed by simultaneous electroencephalogram/functional magnetic resonance imaging.
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Effects of parametrical and trial-to-trial variation in prior probability processing revealed by simultaneous electroencephalogram/functional magnetic resonance imaging.

机译:脑电图/功能磁共振成像同时显示出参数和试验间变化在先验概率处理中的作用。

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摘要

Prior knowledge of the probabilities concerning decision alternatives facilitates the selection of more likely alternatives to the disadvantage of others. The neural basis of prior probability (PP) integration into the decision-making process and associated preparatory processes is, however, still essentially unknown. Furthermore, trial-to-trial fluctuations in PP processing have not been considered thus far. In a previous study, we found that the amplitude of the contingent negative variation (CNV) in a precueing task is sensitive to PP information (Scheibe et al., 2009). We investigated brain regions with a parametric relationship between neural activity and PP and those regions involved in PP processing on a trial-to-trial basis in simultaneously recorded electroencephalographic (EEG) and functional magnetic resonance imaging (fMRI) data. Conventional fMRI analysis focusing on the information content of the probability precue revealed increasing activation of the posterior medial frontal cortex with increasing PP, supporting its putative role in updating action values. EEG-informed fMRI analysis relating single-trial CNV amplitudes to the hemodynamic signal addressed trial-to-trial fluctuations in PP processing. We identified a set of regions mainly consisting of frontal, parietal, and striatal regions that represents unspecific response preparation on a trial-to-trial basis. A subset of these regions, namely, the dorsolateral prefrontal cortex, the inferior frontal gyrus, and the inferior parietal lobule, showed activations that exclusively represented the contributions of PP to the trial-to-trial fluctuations of the CNV.
机译:对与决策选择有关的概率的先验知识有助于选择更多可能的选择,以替代其他人的劣势。但是,将先验概率(PP)集成到决策过程和相关的准备过程中的神经基础仍然基本上是未知的。此外,到目前为止,尚未考虑PP处理中的试验间波动。在先前的研究中,我们发现在先发任务中或有负变化(CNV)的幅度对PP信息敏感(Scheibe et al。,2009)。我们在同时记录的脑电图(EEG)和功能磁共振成像(fMRI)数据中,以试验为基础研究了神经活动与PP和参与PP处理的区域之间具有参数关系的大脑区域。传统的功能磁共振成像分析集中于概率线索的信息内容,显示随着PP的增加,后内侧额叶皮层的激活增加,从而支持了其在更新动作值方面的假定作用。脑电图fMRI分析将单次试验CNV振幅与血液动力学信号相关,解决了PP处理中的试验间波动。我们确定了一组主要由额叶,顶叶和纹状体区域组成的区域,这些区域代表了从试验到试验的非特异性反应准备。这些区域的一个子集,即背外侧前额叶皮层,额叶下回和顶叶下小叶,显示出仅代表PP对CNV试验间波动的贡献的激活。

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