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A 20-Channel Magnetoencephalography System Based on Optically Pumped Magnetometers

机译:基于光泵磁强计的20通道脑磁图系统

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摘要

We describe a multichannel magnetoencephalography (MEG) system that uses optically pumped magnetometers (OPMs) to sense the magnetic fields of the human brain. The system consists of an array of 20 OPM channels conforming to the human subject’s head, a person-sized magnetic shield containing the array and the human subject, a laser system to drive the OPM array, and various control and data acquisitions systems. We conducted two MEG experiments: auditory evoked magnetic field (AEF) and somatosensory evoked magnetic field (SEF), on three healthy male subjects, using both our OPM array and a 306-channel Elekta-Neuromag superconducting quantum interference device (SQUID) MEG system. The described OPM array measures the tangential components of the magnetic field as opposed to the radial component measured by most SQUID-based MEG systems. Herein, we compare the results of the OPM- and SQUID-based MEG systems on the auditory and somatosensory data recorded in the same individuals on both systems.
机译:我们描述了一种多通道磁脑图(MEG)系统,该系统使用光泵磁强计(OPM)来感应人脑的磁场。该系统由20个OPM通道阵列组成,这些通道符合人体的头部,包含该阵列和人体的人大小的磁屏蔽罩,驱动OPM阵列的激光系统以及各种控制和数据采集系统。我们使用OPM阵列和306通道Elekta-Neuromag超导量子干扰设备(SQUID)MEG系统对三个健康男性受试者进行了两个MEG实验:听觉诱发磁场(AEF)和体感诱发磁场(SEF) 。所描述的OPM阵列测量的是磁场的切向分量,而不是大多数基于SQUID的MEG系统所测量的径向分量。在这里,我们比较了基于OPM和SQUID的MEG系统在两个系统中同一个人记录的听觉和体感数据上的结果。

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