当前位置: X-MOL 学术Annu. Rev. Biomed. Eng. › 论文详情
Our official English website, www.x-mol.net, welcomes your feedback! (Note: you will need to create a separate account there.)
Electrophysiological Source Imaging: A Noninvasive Window to Brain Dynamics
Annual Review of Biomedical Engineering ( IF 12.8 ) Pub Date : 2018-06-04 00:00:00 , DOI: 10.1146/annurev-bioeng-062117-120853
Bin He 1, 2 , Abbas Sohrabpour 2 , Emery Brown 3 , Zhongming Liu 4
Affiliation  

Brain activity and connectivity are distributed in the three-dimensional space and evolve in time. It is important to image brain dynamics with high spatial and temporal resolution. Electroencephalography (EEG) and magnetoencephalography (MEG) are noninvasive measurements associated with complex neural activations and interactions that encode brain functions. Electrophysiological source imaging estimates the underlying brain electrical sources from EEG and MEG measurements. It offers increasingly improved spatial resolution and intrinsically high temporal resolution for imaging large-scale brain activity and connectivity on a wide range of timescales. Integration of electrophysiological source imaging and functional magnetic resonance imaging could further enhance spatiotemporal resolution and specificity to an extent that is not attainable with either technique alone. We review methodological developments in electrophysiological source imaging over the past three decades and envision its future advancement into a powerful functional neuroimaging technology for basic and clinical neuroscience applications.

中文翻译:


电生理源成像:大脑动力学的无创窗口

大脑活动和连接分布在三维空间中并随时间演变。以高空间和时间分辨率对大脑动态进行成像非常重要。脑电图 (EEG) 和脑磁图 (MEG) 是与编码大脑功能的复杂神经激活和相互作用相关的无创测量。电生理源成像通过脑电图和脑磁图测量来估计潜在的脑电源。它提供了不断提高的空间分辨率和本质上高的时间分辨率,用于在广泛的时间尺度上对大规模大脑活动和连接进行成像。电生理源成像和功能磁共振成像的整合可以进一步提高时空分辨率和特异性,达到单独使用任何一种技术都无法达到的程度。我们回顾了过去三十年电生理源成像方法的发展,并展望其未来发展成为一种强大的功能神经成像技术,用于基础和临床神经科学应用。

更新日期:2018-06-04
down
wechat
bug