Title :
A new method based on sparse component decomposition to remove MRI artifacts in the continuous EEG recordings
Author :
Xu, Peng ; Chen, Huafu ; Liu, Zuxiang ; Yao, Dezhong
Author_Institution :
Sch. of Life Sci. & Tech., Univ. of Electron. Sci. & Tech., Chengdu
Abstract :
How to effectively remove the magnetic resonance imaging (MRI) artifacts in the electroencephalography (EEG) recordings, induced when EEG and functional magnetic resonance imaging (FMRI) are simultaneously recorded, is a challenge for integration of EEG and FMRI. According to the temporal-spatial difference between MRI artifacts and EEG, a new method based on sparse component decomposition in the mixed over-complete dictionary is proposed in this paper to remove MR artifacts. A mixed over-complete dictionary(MOD) of wavelet and discrete cosine which can exhibit the temporal-spatial discrepancy between MRI artifacts and EEG is constructed first, and then the signals are separated by learning in this MOD with matching pursuit(MP) algorithm. After the sparse decomposition in MOD, the filtered EEG is approximately represented by the linear combination of atoms in the wavelet overcomplete dictionary and the removed MRI artifacts by that in the discrete cosine dictionary. The method is applied to the MRI artifacts corrupted EEG recordings and the decomposition result shows its validation
Keywords :
biomedical MRI; discrete cosine transforms; electroencephalography; iterative methods; medical signal processing; source separation; spatiotemporal phenomena; wavelet transforms; MRI artifact removal; continuous EEG recordings; discrete cosine dictionary; electroencephalography; filtered EEG; functional magnetic resonance imaging; matching pursuit algorithm; mixed over-complete dictionary; signal representation; signals are separated; sparse component decomposition; temporal-spatial discrepancy; wavelet overcomplete dictionary; Analytical models; Brain modeling; Dictionaries; Discrete cosine transforms; Electroencephalography; Enterprise resource planning; Frequency; Magnetic resonance imaging; Matching pursuit algorithms; Transient analysis; Electroencephalography; Magnetic resonance imaging artifacts; Mixed over-complete dictionary; Sparse component analysis;
Conference_Titel :
Engineering in Medicine and Biology Society, 2005. IEEE-EMBS 2005. 27th Annual International Conference of the
Conference_Location :
Shanghai
Print_ISBN :
0-7803-8741-4
DOI :
10.1109/IEMBS.2005.1616849