A Bayesian approach to introducing anatomo-functional priors in the EEG/MEG inverse problem

被引:237
作者
Baillet, S [1 ]
Garnero, L [1 ]
机构
[1] UNIV PARIS 11, FAC ORSAY, INST OPT THEOR & APPL, CNRS, URA 14, ORSAY, FRANCE
关键词
Bayesian imaging; EEG; edge-preserving regularization; MEG; multimodality imaging; source estimation;
D O I
10.1109/10.568913
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
In this paper, we present a new approach to the recovering of dipole magnitudes in distributed source model for magnetoencephalographic (MEG) and electroencephalographic (EEG) imaging. This method consists in introducing spatial and temporal a priori information as a cure to this ill-posed inverse problem. A nonlinear spatial regularization scheme allows the preservation of dipole moment discontinuities between some a priori noncorrelated sources, for instance, when considering dipoles located on both sides of a sulcus. Moreover, we introduce temporal smoothness constraints on dipole magnitude evolution at time scales smaller than those of cognitive processes. These priors are easily integrated into a Bayesian formalism, yielding a maximum a posteriori (MAP) estimator of brain electrical activity. Results from EEG simulations of our method are presented and compared with those of classical quadratic regularization and a now popular generalized minimum-norm technique called low-resolution electromagnetic tomography (LORETA).
引用
收藏
页码:374 / 385
页数:12
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