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Combination of magnetoencephalography (MEG) and functional magnetic resonance imaging (FMRI) for neurosurgical mapping of the sensory and motor cortices

机译:用于感觉和电机皮质的神经外科映射的磁性脑图(MEG)和功能磁共振成像(FMRI)的组合

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Magnetoencephalography (MEG) and functional magnetic resonance imaging (FMRI) were applied to brain mapping in normal volunteers and three patients with tumors. Somatosensory evoked fields (SEFs) due to median, ulnar and posterior tibial nerve stimulation were measured using a whole head MEG system. FMRI used an echo planner imaging method during hand, toe and lip movement. Estimated SEF dipoles and activated FMRI regions were superimposed on anatomical MRI. The central sulcus was identified by source localization of the SEFs in all subjects. Functional abnormality could be detected as reduced amplitude or latency delay of the SEF peaks. FMRI indicated multiple and extended regions of activation, such as primary motor, primary sensory and supplementary motor cortices. The highest signal activation was usually found in the contralateral primary sensory/motor cortices. However, the primary motor and sensory cortices were not activated due the effect of the lesion in one patient. The highest activation was found far posterior to the central sulcus due to a large venous inflow effect in another patient. The combination of MEG and FMRI can avoid any misinterpretation due to use of only one method of functional brain mapping, especially in patients with brain lesions.
机译:磁性脑图(MEG)和功能性磁共振成像(FMRI)被应用于正常志愿者的脑部映射和三名肿瘤患者。使用整个头部MEG系统测量由于中位数,尺骨和后胫骨神经刺激引起的躯体感觉诱发的田间(SEFS)。 FMRI在手,脚趾和唇部运动中使用了回声策划仪成像方法。估计的SEF偶极子和活化的FMRI区域叠加在解剖学MRI上。通过所有受试者的SEF的源定位鉴定中央抑制。可以检测功能异常,减小SEF峰的幅度或延迟延迟。 FMRI表示激活的多个和扩展区域,如主电机,主要感觉和补充电机皮质。最高的信号激活通常在对侧初级感觉/电机皮质中发现。然而,由于病变在一个患者中的效果,未激活初级电机和感觉皮质。由于另一名患者的大型静脉流入效应,最高的活化是远见的中央沟。由于只使用一种功能性脑映射,尤其是脑病变的患者,MEG和FMRI的组合可以避免任何误解。

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