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Clinical applications of the signal space separation method

机译:信号空间分离方法的临床应用

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Conventional biomagnetic measurements suffer from the extreme sensitivity of the method to external and subject-related interference, Especially difficult to remove artifacts are caused by magnetic sources inside the shielded room and especially by magnetization associated with the subject. Such artifacts are encountered, e.g. with subjects having braces, magnetic stimulators and pacers or magnetic impurities in the lungs or in the head, etc. These problems, typical to patients, may severely reduce the clinical applicability of magnetoencephalography (MEG). The Signal Space Separation (SSS) method introduces a revolutionary improvement in feasibility and robustness of MEG measurements in the presence of such sources of artifacts, SSS allows recordings in environments with external interference of arbitrary geometry. With SSS, the compensation of subject-related artifacts typically arising from unintentional movements of the body and head is possible. With this method, every measurement can be uniquely decomposed into device-independent components with separate components for the interesting biomagnetic signals and external interference signals irrespective of the temporal or statistical nature of the sources. The device independence of this decomposition enables compensation of movement artifacts and analysis of DC phenomena.
机译:常规的生物磁测量患者对外部和受试者相关的干扰的极端敏感性,特别难以去除伪影是由屏蔽室内的磁源引起的,尤其是与对象相关联的磁化引起的。例如,遇到这样的伪像。对于肺部或头部中具有括号,磁刺激器和起搏器或磁杂质的受试者,患者典型的这些问题可能会严重降低磁性脑图(MEG)的临床适用性。信号空间分离(SSS)方法引入了在存在这些工件的存在下的MEG测量的可行性和鲁棒性的革命性提高,SSS允许在具有任意几何的外部干扰的环境中记录。对于SSS,可以获得来自身体和头部无意动作的受试者相关伪影的补偿。利用这种方法,每次测量都可以唯一地分解成具有用于有趣的生物磁信号的单独部件的无关组件和外部干扰信号,而不管源的时间或统计性质如何。该分解的器件独立性能够补偿运动伪影和DC现象的分析。

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