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Ultra-low-field magnetic resonance imaging combined with magnetoencephalography

机译:超低场磁共振成像结合脑磁图

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Human brain activity can be monitored with magnetoencephalography (MEG) by measuring the femtotesla-level extracerebral magnetic fields with SQUID magnetometers. On the other hand, the structure of the brain can be determined with magnetic resonance imaging (MRI), where the applied fields may be 15 orders of magnitude higher than the smallest neuromagnetic signals, ruling out simultaneous MEG. It has been demonstrated recently that simultaneous MRI and MEG is possible: the trick is prepolarization at about 0.1 tesla and MRI at about 0.1 mT. We have designed and are building a hybrid multichannel helmet-shaped MEG-MRI device, which will be capable of simultaneous ultra-low-field MRI and MEG.
机译:人脑活动可以通过脑磁图(MEG)来监测,方法是使用SQUID磁力计测量飞轮水平的脑外磁场。另一方面,可以通过磁共振成像(MRI)确定大脑的结构,其中所施加的磁场可能比最小的神经磁信号高15个数量级,从而排除了同时发生的MEG。最近已经证明,同时进行MRI和MEG是可行的:诀窍是在约0.1特斯拉的预极化和在约0.1 mT的MRI。我们已经设计并正在制造一种混合的多通道头盔状MEG-MRI设备,该设备将能够同时进行超低场MRI和MEG。

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