Esposito Fabrizio, Mulert Christoph, Goebel Rainer
Department of Cognitive Neuroscience, Maastricht University, P.O. Box 616, 6200 MD Maastricht, Maastricht, The Netherlands.
Neuroimage. 2009 Aug 1;47(1):112-21. doi: 10.1016/j.neuroimage.2009.03.074. Epub 2009 Apr 8.
Single-trial coupling of simultaneously recorded EEG and fMRI time-series can be used to generate fMRI patterns of brain activity with high spatial resolution from EEG responses with high temporal resolution. A forced choice reaction task under different effort conditions has been previously used to demonstrate single-trial EEG-fMRI coupling effects for an early ERP component (N1: 70-150 ms) measured on a single scalp channel (Cz), thereby providing the first multi-modal evidence of early anterior cingulate cortex (ACC) activation in effortful decision making (Mulert, C., Seifert, C., Leicht, G., Kirsch, V., Ertl, M., Karch, S., Moosmann, M., Lutz, J., Möller, H.J., Hegerl, U., Pogarell, O., Jäger, L., 2008. Single-trial coupling of EEG and fMRI reveals the involvement of early anterior cingulate cortex activation in effortful decision making. Neuroimage 42, 158-168.). In this work, we searched for "effort-specific" ERP-N1 sources and explored their single-trial EEG-fMRI correlations for discovering "source-specific" inter-modality coupling effects. To this end, we performed a whole-cortex distributed ERP analysis and used the local source power trial-by-trial variation as an input for single-trial EEG-fMRI coupling analysis. We found a high-effort-specific ERP-N1 source in the ACC and statistically significant differential EEG-fMRI coupling spots in five cortical regions, including the ACC. Our results provide new insights about the neural origins of effort-specific EEG and fMRI response modulations in a choice reaction task and confirm the central role of early ACC activation in motivation-related decision making processes; we discuss the importance of combining distributed source modeling with single-trial coupling for enriching the interpretation of EEG-fMRI patterns.
同时记录的脑电图(EEG)和功能磁共振成像(fMRI)时间序列的单试次耦合,可用于从具有高时间分辨率的EEG反应中生成具有高空间分辨率的大脑活动fMRI模式。先前已使用不同努力条件下的强制选择反应任务,来证明在单个头皮通道(Cz)上测量的早期事件相关电位成分(N1:70 - 150毫秒)的单试次EEG - fMRI耦合效应,从而为费力决策中早期前扣带回皮质(ACC)激活提供了首个多模态证据(Mulert, C., Seifert, C., Leicht, G., Kirsch, V., Ertl, M., Karch, S., Moosmann, M., Lutz, J., Möller, H.J., Hegerl, U., Pogarell, O., Jäger, L., 2008. EEG与fMRI的单试次耦合揭示早期前扣带回皮质激活参与费力决策。《神经影像学》42, 158 - 168.)。在这项研究中,我们寻找“努力特异性”的ERP - N1源,并探索它们的单试次EEG - fMRI相关性,以发现“源特异性”的跨模态耦合效应。为此,我们进行了全脑分布式ERP分析,并将局部源功率的逐次试验变化用作单试次EEG - fMRI耦合分析的输入。我们在ACC中发现了一个高努力特异性的ERP - N1源,并在包括ACC在内的五个皮质区域发现了具有统计学意义的差异EEG - fMRI耦合点。我们的结果为选择反应任务中努力特异性EEG和fMRI反应调制的神经起源提供了新见解,并证实了早期ACC激活在动机相关决策过程中的核心作用;我们讨论了将分布式源建模与单试次耦合相结合以丰富EEG - fMRI模式解释的重要性。