Im Chang-Hwan, Lee Soo Yeol
Department of Biomedical Engineering, Yonsei University, 234 Maejiri, Heungeop-myun, Wonju-si, Kangwon-do, 220-710, Korea.
Phys Med Biol. 2006 Dec 7;51(23):6005-21. doi: 10.1088/0031-9155/51/23/004. Epub 2006 Oct 30.
fMRI-constrained EEG/MEG source imaging can be a powerful tool in studying human brain functions with enhanced spatial and temporal resolutions. Recent studies on the combination of fMRI and EEG/MEG have suggested that fMRI prior information could be readily implemented by simply imposing different weighting factors to cortical sources overlapping with the fMRI activations. It has been also reported, however, that such a hard constraint may cause severe distortions or elimination of meaningful EEG/MEG sources when there are distinct mismatches between the fMRI activations and the EEG/MEG sources. If one wants to obtain the actual EEG/MEG source locations and uses the fMRI prior information as just an auxiliary tool to enhance focality of the distributed EEG/MEG sources, it is reasonable to weaken the strength of fMRI constraint when severe mismatches between fMRI and EEG/MEG sources are observed. The present study suggests an efficient technique to automatically adjust the strength of fMRI constraint according to the mismatch level. The use of the proposed technique rarely affects the results of conventional fMRI-constrained EEG/MEG source imaging if no major mismatch between the two modalities is detected; while the new results become similar to those of typical EEG/MEG source imaging without fMRI constraint if the mismatch level is significant. A preliminary simulation study using realistic EEG signals demonstrated that the proposed technique can be a promising tool to selectively apply fMRI prior information to EEG/MEG source imaging.
功能磁共振成像(fMRI)约束的脑电图(EEG)/脑磁图(MEG)源成像可以成为研究人类脑功能的强大工具,具有更高的空间和时间分辨率。最近关于fMRI与EEG/MEG结合的研究表明,通过简单地对与fMRI激活重叠的皮质源施加不同的加权因子,可以很容易地应用fMRI先验信息。然而,也有报道称,当fMRI激活与EEG/MEG源之间存在明显不匹配时,这种硬约束可能会导致有意义的EEG/MEG源出现严重扭曲或被消除。如果想要获得实际的EEG/MEG源位置,并将fMRI先验信息仅用作增强分布式EEG/MEG源聚焦性的辅助工具,那么当观察到fMRI与EEG/MEG源之间存在严重不匹配时,削弱fMRI约束的强度是合理的。本研究提出了一种有效的技术,可根据不匹配程度自动调整fMRI约束的强度。如果在两种模态之间未检测到重大不匹配,使用所提出的技术很少会影响传统的fMRI约束EEG/MEG源成像结果;而如果不匹配程度显著,新结果将与没有fMRI约束的典型EEG/MEG源成像结果相似。一项使用逼真EEG信号的初步模拟研究表明,所提出的技术可以成为一种有前景的工具,用于有选择地将fMRI先验信息应用于EEG/MEG源成像。