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Localizing P300 generators in high-density event- related potential with fMRI

机译:通过fMRI将P300发生器定位在高密度事件相关电位

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Background To assess the effects of stimulus context on the P300 component, an eight-orientation Landolt ring task was introduced. As the stimulus context of this task differs from the traditional two-stimulus oddball paradigm, the purpose here was to apply EEG/fMRI integration to investigate the localization and activities of the P300 generators involved with this task. Material and Method Ten healthy subjects performed the visual P300 task while fMRI and 64-channel ERP data were acquired. The voltage topographical maps of the P300 component were calculated and analyzed for the main activation foci. Furthermore, constraints from fMRI were used to identify the source activities of visual P300 ERP. Results Analysis of the hemodynamic response to the visual target stimuli revealed a distributed network of neural sources in the bilateral parietal lobules, middle and inferior frontal gyrus, precentral and postcentral cortex, and anterior cingulate gyrus. The analysis particularly showed preponderant activations of the bilateral superior parietal lobules. In this target detection design, two distinct P300 peaks were observed in the dipole waveforms, the bilateral prefrontal and the right inferior parietal dipole waveforms displayed the higher peak at short latency, while the four parietal, the anterior cingulate, and the temporal dipole waveforms had the higher peak at long latency. Conclusions Compared with the classical oddball paradigm, the amplitude decreased in this study, which might be related to its particular stimulus context. The source technique was utilized to yield a realistic 11-dipole model and distinguish the anatomical generators of early and late components of the P300 response.
机译:背景技术为了评估刺激环境对P300组件的影响,引入了八向Landolt环任务。由于此任务的刺激环境与传统的两刺激奇异球范例不同,因此此处的目的是应用EEG / fMRI集成来研究参与此任务的P300发生器的定位和活动。材料和方法十名健康受试者执行了视觉P300任务,同时获取了fMRI和64通道ERP数据。计算并分析了P300组件的电压地形​​图,并分析了其主要活化部位。此外,功能磁共振成像的约束条件被用于识别视觉P300 ERP的来源活动。结果对视觉目标刺激的血流动力学反应分析显示,在双侧顶叶,额中下额叶回,中央前和中央后皮层以及前扣带回的神经源分布网络。该分析特别显示了双侧上壁小叶的优势激活。在此目标检测设计中,在偶极子波形中观察到两个不同的P300峰,双侧前额叶和右下壁偶极子波形在短潜伏期显示出较高的峰,而四个顶叶,前扣带和时间偶极子波形具有较长延迟下的较高峰值。结论与经典的奇异球范式相比,本研究的幅度减小了,这可能与其特定的刺激环境有关。利用源技术产生了一个逼真的11偶极子模型,并区分了P300响应的早期和晚期成分的解剖生成器。

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