Department of Psychology, University of South Carolina, Columbia, USA.
Brain Topogr. 2022 Jul;35(4):398-415. doi: 10.1007/s10548-022-00899-9. Epub 2022 May 11.
Accurate cortical source localization of event-related potentials (ERPs) requires using realistic head models constructed from the participant's structural magnetic resonance imaging (MRI). A challenge in developmental studies is the limited accessibility of participant-specific MRIs. The present study compared source localization of infants' N290 ERP activities estimated using participant-specific head models with a series of substitute head models. The N290 responses to faces relative to toys were measured in 36 infants aged at 4.5, 7.5, 9, and 12 months. The substitutes were individual-based head models constructed from age-matched MRIs with closely matched ("close") or different ("far") head measures with the participants, age-appropriate average template, and age-inappropriate average templates. The greater source responses to faces than toys at the middle fusiform gyrus (mFG) estimated using participant-specific head models were preserved in individual-based head models, but not average templates. The "close" head models yielded the best fit with the participant-specific head models in source activities at the mFG and across face-processing-related regions of interest (ROIs). The age-appropriate average template showed mixed results, not supporting the stimulus effect but showed topographical distributions across the ROIs like the participant-specific head models. The "close" head models are the most optimal substitute for participant-specific MRIs.
准确的事件相关电位 (ERP) 皮质源定位需要使用基于参与者结构磁共振成像 (MRI) 的真实头部模型。在发育研究中,参与者特定 MRI 的有限可及性是一个挑战。本研究比较了使用参与者特定头部模型和一系列替代头部模型估计婴儿 N290 ERP 活动的源定位。在 36 名 4.5、7.5、9 和 12 个月大的婴儿中,测量了相对于玩具的面孔诱发的 N290 反应。替代物是从年龄匹配的 MRI 构建的个体基础头部模型,其头部测量与参与者具有紧密匹配(“接近”)或不同(“远”),以及年龄适当的平均模板和年龄不适当的平均模板。使用参与者特定头部模型估计的,从中脑梭状回(mFG)到面孔比玩具的更大源反应在个体基础头部模型中得到了保留,但在平均模板中没有。“接近”头部模型在 mFG 以及面孔处理相关感兴趣区域(ROI)的源活动中与参与者特定头部模型的拟合最好。年龄适当的平均模板显示出混合结果,不支持刺激效应,但在 ROI 之间显示出与参与者特定头部模型相似的地形分布。“接近”头部模型是参与者特定 MRI 的最佳替代物。