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Studies on Response of Human Hippocampus to Random Somatosensory Stimuli by a SQUID System in a Superconducting Magnetic Shield

机译:超导磁屏蔽中SQUID系统对人海马体感随机刺激的响应研究

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An essential role of a superconducting magnetic shield is described for study of higher function of human brains. The present SQUID has a sensitivity of 0.9 ${rm fT}/({rm Hz})^{1/2}$ at 100 Hz in a superconducting magnetic shield. SQUID sensors are made of SNS (Superconductor/Normal metal/Superconductor) junctions. Recent theories of beamformer and MUSIC (multiple signal classification) emphasize the importance of SNR (signal-to-noise ratio) of data to locate equivalent current dipoles in brains. For instance, MUSIC uses the noise subspace of the covariant matrix practically calculated by measured magnetic fields. Dynamical responses of hippocampus to novelty or unexpectedness are measured by the SQUID system in a superconducting magnetic shield and visualized by swLORETA—an extension of sLORETA (standardized low-resolution electromagnetic tomography). The SQUID system in a magnetic shield of high-Tc superconductor is yielding new information of deep areas of human brains. The sensitivity of neuromagnetic SQUID measurements is proved to be limited by the system noise temperature of a SQUID hardware system but not so-called “brain noises”.
机译:描述了超导磁屏蔽的重要作用,以研究人脑的更高功能。本发明的SQUID在超导磁屏蔽中在100Hz下的灵敏度为0.9 $ {rm fT} /({rmHz})^ {1/2} $。 SQUID传感器由SNS(超导体/普通金属/超导体)结制成。波束形成器和MUSIC(多种信号分类)的最新理论强调了数据SNR(信噪比)对在大脑中定位等效电流偶极子的重要性。例如,MUSIC使用实际上通过测量磁场计算出的协变矩阵的噪声子空间。通过SQUID系统在超导磁屏蔽中测量海马对新颖性或意外性的动态响应,并通过swLORETA(sLORETA(标准的低分辨率电磁层析成像)的扩展)可视化。高Tc超导体磁屏蔽中的SQUID系统正在产生人脑深处的新信息。事实证明,神经磁性SQUID测量的灵敏度受SQUID硬件系统的系统噪声温度限制,但不受所谓的“脑噪声”限制。

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