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Application of 3-D MEG measurement for estimating multiple sources

机译:3-D MEG测量在估计多个源中的应用

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The authors have developed a three-dimensional (3-D) second-order gradiometer connected to three SQUIDs for vector measurement of MEG that can detect magnetic field components perpendicular and tangential to the scalp simultaneously. Each coil is orthogonally wound with Nb-Ti wire on a rectangular solid 3/spl times/3/spl times/6 cm. To assess discrimination and separation of multiple sources, the authors carried out both simulation study and 3-D vector measurement of MEG with mixed AEF (auditory evoked field) and SEF (somatosensory evoked field) overlapping in time. The magnetic field distribution perpendicular to the scalp was not helpful for estimating the location and number of sources, owing to the lack of a dipole pattern. But the magnetic field distribution tangential to the scalp can provide information about new constraint conditions by visual inspection. The authors estimated multiple sources of mixed AEF and SEF from the MEG data of the magnetic field tangential to the scalp and confirmed by comparison with MRI of a subject's head superimposed source locations.
机译:作者已经开发了与三个SQUID相连的三维(3-D)二阶梯度仪,用于MEG的矢量测量,可以同时检测与头皮垂直和相切的磁场分量。每个线圈用Nb-Ti线正交缠绕在矩形实心3 / spl次/ 3 / spl次/ 6 cm上。为了评估多种来源的区分和分离,作者对混合时间重叠的AEF(听觉诱发电场)和SEF(体感诱发电场)的MEG进行了仿真研究和3-D矢量测量。由于缺少偶极子模式,垂直于头皮的磁场分布无助于估计源的位置和数量。但是与头皮相切的磁场分布可以通过视觉检查提供有关新约束条件的信息。作者根据与头皮相切的磁场的MEG数据估算了多个混合的AEF和SEF来源,并通过与MRI进行了比较,证实了受试者头部重叠的来源位置。

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