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Multimodal Functional Neuroimaging: Integrating Functional MRI and EEG/MEG

机译:多模式功能性神经影像:整合功能性MRI和EEG / MEG

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摘要

Noninvasive functional neuroimaging, as an important tool for basic neuroscience research and clinical diagnosis, continues to face the need of improving the spatial and temporal resolution. While existing neuroimaging modalities might approach their limits in imaging capability mostly due to fundamental as well as technical reasons, it becomes increasingly attractive to integrate multiple complementary modalities in an attempt to significantly enhance the spatiotemporal resolution that cannot be achieved by any modality individually. Electrophysiological and hemodynamic/metabolic signals reflect distinct but closely coupled aspects of the underlying neural activity. Combining fMRI and EEG/MEG data allows us to study brain function from different perspectives. In this review, we start with an overview of the physiological origins of EEG/MEG and fMRI, as well as their fundamental biophysics and imaging principles, we proceed with a review of the major advances in the understanding and modeling of neurovascular coupling and in the methodologies for the fMRI-EEG/MEG simultaneous recording. Finally, we summarize important remaining issues and perspectives concerning multimodal functional neuroimaging, including brain connectivity imaging.
机译:作为基础神经科学研究和临床诊断的重要工具,无创功能性神经影像学继续面临着改善空间和时间分辨率的需求。尽管现有的神经影像学方法可能主要由于基本和技术原因而接近成像能力的极限,但集成多种互补的方法以显着提高时空分辨率是任何一种方法都无法单独实现的,这已变得越来越有吸引力。电生理和血液动力学/代谢信号反映了潜在神经活动的不同但紧密耦合的方面。将fMRI与EEG / MEG数据相结合可以使我们从不同角度研究大脑功能。在这篇综述中,我们首先概述了EEG / MEG和fMRI的生理起源,以及它们的基本生物物理和成像原理,然后对神经血管耦合的理解和建模以及在fMRI-EEG / MEG同时记录的方法学。最后,我们总结了有关多模式功能神经成像(包括脑连接成像)的重要问题和观点。

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