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Improved measurement surface for MEG using magnetic-dipole sources and a spherical-multipole expansion

机译:使用磁偶极子源和球形多极子扩展的MEG改进的测量表面

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The multipole representation of Magnetoencephalography (MEG) signals is known as a useful tool for distinguishing between magnetic fields arising from the brain and external disturbances. In this contribution we extend this concept and show that a closed double-layer surface with magnetometer probes is better suited to determine the corresponding multipole amplitudes αsublm/sub than a conventional single-layer surface with gradiometers and magnetometer probes. For two different source configurations we show that the αsublm/sub rapidly converge to the exact values. This proof of concept motivates to further optimize the geometry of the double-layer surface and the sensors' positions.
机译:磁脑电图(MEG)信号的多极表示法是一种有用的工具,可用于区分由大脑产生的磁场和外部干扰。在这一贡献中,我们扩展了这个概念,并表明,与带有梯度计和磁力计探头的传统单层表面相比,带有磁力计探针的封闭双层表面更适合于确定相应的多极振幅α lm 。对于两种不同的源配置,我们表明α lm 迅速收敛到精确值。这一概念证明的目的是进一步优化双层表面的几何形状和传感器的位置。

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