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Noise cancellation by a whole-cortex SQUID MEG system

机译:全皮质SQUID MEG系统消除噪音

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We report on the noise cancellation performance of several whole-cortex MEG systems operated under diverse noise conditions, ranging from unshielded environments to moderately shielded rooms. The noise cancellation is performed by means of spatial filtering using high order gradiometers (2nd or 3rd), which can be formed optionally either by SQUID electronics firmware or by software. The spatial dependence of the gradiometer responses was measured in an unshielded environment and compared with simulations to yield an estimate of the system common mode magnitudes relative to field, 1st, and 2nd gradients. High order gradiometers were also formed when the system was operated in moderately shielded rooms. The combination of the spatial filtering and room shielding resulted in very high combined noise rejections approaching that of high quality shielded rooms. Examples of noise cancellation under various conditions are shown.
机译:我们报告了在从无屏蔽环境到中等屏蔽房间的各种噪声条件下运行的几种全皮质MEG系统的噪声消除性能。噪声消除是通过使用高阶梯度计(第2或第3)进行空间滤波来执行的,可以选择通过SQUID电子固件或软件来形成。在非屏蔽环境中测量了梯度计响应的空间依赖性,并将其与模拟进行比较,以得出相对于磁场,第一和第二梯度的系统共模幅值的估计值。当系统在中等屏蔽的房间中运行时,还形成了高阶梯度仪。空间滤波和房间屏蔽的结合导致非常高的组合噪声抑制,接近高质量屏蔽房间的噪声抑制。显示了在各种条件下消除噪音的示例。

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