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Localization bias and spatial resolution of adaptive and non-adaptive spatial filters for MEG source reconstruction

机译:用于MEG源重构的自适应和非自适应空间滤波器的定位偏差和空间分辨率

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摘要

This paper discusses the location bias and the spatial resolution in the reconstruction of a single dipole source by various spatial filtering techniques used for neuromagnetic imaging. We first analyze the location bias for several representative adaptive and non-adaptive spatial filters using their resolution kernels. This analysis theoretically validates previously reported empirical findings that standardized low-resolution electromagnetic tomography (sLORETA) has no location bias. We also find that the minimum-variance spatial filter does exhibit bias in the reconstructed location of a single source, but that this bias is eliminated by using the normalized lead field. We then focus on the comparison of sLORETA and the lead-field normalized minimum-variance spatial filter, and analyze the effect of noise on source location bias. We find that the signal-to-noise ratio (SNR) in the measurements determines whether the sLORETA reconstruction has source location bias, while the lead-field normalized minimum-variance spatial filter has no location bias even in the presence of noise. Finally, we compare the spatial resolution for sLORETA and the minimum-variance filter, and show that the minimum-variance filter attains much higher resolution than sLORETA does. The results of these analyses are validated by numerical experiments as well as by reconstructions based on two sets of evoked magnetic responses.
机译:本文讨论了用于神经磁成像的各种空间滤波技术在重建单个偶极子源中的位置偏差和空间分辨率。我们首先使用其分辨率内核分析几种代表性的自适应和非自适应空间滤波器的位置偏差。该分析从理论上验证了以前报道的经验发现,即标准化的低分辨率电磁层析成像(sLORETA)没有位置偏差。我们还发现,最小方差空间滤波器在单个源的重构位置中确实显示出偏差,但是通过使用归一化的导程,可以消除这种偏差。然后,我们将重点放在sLORETA与超前场归一化最小方差空间滤波器的比较上,并分析噪声对源位置偏差的影响。我们发现测量中的信噪比(SNR)决定了sLORETA重构是否具有源位置偏差,而前场归一化最小方差空间滤波器即使在存在噪声的情况下也没有位置偏差。最后,我们比较了sLORETA和最小方差滤波器的空间分辨率,并表明最小方差滤波器比sLORETA具有更高的分辨率。这些分析的结果通过数值实验以及基于两组诱发的磁响应的重构得到了验证。

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