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脑功能的无噪声脑磁图记录。

Noise-free magnetoencephalography recordings of brain function.

作者信息

Volegov P, Matlachov A, Mosher J, Espy M A, Kraus R H

机构信息

Los Alamos National Laboratory, Los Alamos, NM 87545, USA.

出版信息

Phys Med Biol. 2004 May 21;49(10):2117-28. doi: 10.1088/0031-9155/49/10/020.

Abstract

Perhaps the greatest impediment to acquiring high-quality magnetoencephalography (MEG) recordings is the ubiquitous ambient magnetic field noise. We have designed and built a whole-head MEG system using a helmet-like superconducting imaging surface (SIS) surrounding the array of superconducting quantum interference device (SQUID) magnetometers used to measure the MEG signal. We previously demonstrated that the SIS passively shields the SQUID array from ambient magnetic field noise, independent of frequency, by 25-60 dB depending on sensor location. SQUID 'reference sensors' located on the outside of the SIS helmet measure ambient magnetic fields in very close proximity to the MEG magnetometers while being nearly perfectly shielded from all sources in the brain. The fact that the reference sensors measure no brain signal yet are located in close proximity to the MEG sensors enables very accurate estimation and subtraction of the ambient field noise contribution to the MEG sensors using an adaptive algorithm. We have demonstrated total ambient noise reduction factors in excess of 10(6) (> 120 dB). The residual noise for most MEG SQUID channels is at or near the intrinsic SQUID noise floor, typically 2-3 fT Hz-1/2. We are recording MEG signals with greater signal-to-noise than equivalent EEG measurements.

摘要

获取高质量脑磁图(MEG)记录的最大障碍或许就是无处不在的环境磁场噪声。我们设计并构建了一个全头式MEG系统,该系统采用类似头盔的超导成像表面(SIS),围绕用于测量MEG信号的超导量子干涉器件(SQUID)磁力计阵列。我们之前证明,SIS能被动地将SQUID阵列与环境磁场噪声隔离开,与频率无关,根据传感器位置可实现25至60分贝的屏蔽效果。位于SIS头盔外部的SQUID“参考传感器”可在非常靠近MEG磁力计的位置测量环境磁场,同时几乎能完美屏蔽来自大脑的所有信号源。参考传感器虽未检测到大脑信号,但却紧邻MEG传感器,这一事实使得利用自适应算法能非常精确地估计并减去环境磁场噪声对MEG传感器的贡献。我们已证明总的环境噪声降低因子超过10⁶(>120分贝)。大多数MEG SQUID通道的残余噪声处于或接近SQUID的固有噪声本底,通常为2至3飞特斯拉·赫兹⁻¹/²。我们正在记录的MEG信号的信噪比高于等效的脑电图测量。

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