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Dynamical Cortical Activations Associated with Saccade Execution: A Normalized Integrative fMRI-MEG Study

机译:动态皮层激活与扫视运动相关联:标准化的综合功能磁共振成像-MEG研究。

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To validate the performance of a newly developed normalized integrative functional magnetic resonance imaging-magnetoencephalography (fMRI-MEG) method and identify the temporal and spatial characteristics of multiple cortical activations preceding and following saccade execution, we used the fMRI-MEG method to measure and compare neuronal activities while subjects performed both a visually-guided saccade and an apparent motion perception task. Eight healthy subjects participated in the experiments. In the normalized integrative fMRI-MEG method, time-varying dipole moments of activated regions were reconstructed from measured MEGs. Sets of activated regions were determined from statistically analyzed fMRI data and were used as spatial constraints for the integrative fMRI-MEG method. Dynamic recurrent neural activities prior to saccade onset were successfully detected in multiple cortical areas including the V1/V2, V2/V3, frontal eye field (FEF), human middle temporal area (hMT), human medial superior temporal area (hMST), intraparietal sulcus (IPS) and ventral intraparietal area (VIP). These activities lasted for the whole duration of saccade and also showed double-peak responses ; before saccade onset and at saccade termination. These results demonstrated that our proposed normalized integrative fMRI-MEG method is able to reconstruct reasonable time courses of cortical activations commonly occurring in humans. In addition, these results suggest that the double-peak activities observed during saccade execution may be derived from the activities of saccade and fixation neurons. Moreover, repetitive activities in the V1/V2, V2/V3, MT, and MST indicate a possibility of feedforward process triggering discharge of FEF neurons.
机译:为了验证新开发的归一化整合功能磁共振成像-脑磁图(fMRI-MEG)方法的性能并确定扫视执行前后多次皮层激活的时空特征,我们使用fMRI-MEG方法进行测量和比较神经元活动,而受试者同时执行了视觉引导的扫视和明显的运动感知任务。八名健康受试者参加了实验。在归一化的集成fMRI-MEG方法中,从测量的MEG重建了激活区域的时变偶极矩。从统计分析的fMRI数据中确定了一组激活区域,并将其用作集成fMRI-MEG方法的空间约束。在多个皮层区域成功检测到扫视发作之前的动态动态神经活动,包括V1 / V2,V2 / V3,额眼视野(FEF),人中颞区(hMT),人内侧上颞区(hMST),顶叶内沟(IPS)和腹顶壁内区域(VIP)。这些活动持续了整个扫视,并显示出双峰反应;扫视发作之前和扫视终止时。这些结果表明,我们提出的归一化功能性fMRI-MEG方法能够重建人类中常见的皮质激活的合理时间过程。此外,这些结果表明,扫视运动执行过程中观察到的双峰活动可能源自扫视运动和固定神经元的活动。此外,在V1 / V2,V2 / V3,MT和MST中的重复活动表明前馈过程触发FEF神经元放电的可能性。

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