Pantazis Dimitrios, Nichols Thomas E, Baillet Sylvain, Leahy Richard M
Signal and Image Processing Institute, University of Southern California, Los Angeles, CA 90089-2564, USA.
Neuroimage. 2005 Apr 1;25(2):383-94. doi: 10.1016/j.neuroimage.2004.09.040.
We describe the use of random field and permutation methods to detect activation in cortically constrained maps of current density computed from MEG data. The methods are applicable to any inverse imaging method that maps event-related MEG to a coregistered cortical surface. These approaches also extend directly to images computed from event-related EEG data. We determine statistical thresholds that control the familywise error rate (FWER) across space or across both space and time. Both random field and permutation methods use the distribution of the maximum statistic under the null hypothesis to find FWER thresholds. The former methods make assumptions on the distribution and smoothness of the data and use approximate analytical solutions, the latter resample the data and rely on empirical distributions. Both methods account for spatial and temporal correlation in the cortical maps. Unlike previous nonparametric work in neuroimaging, we address the problem of nonuniform specificity that can arise without a Gaussianity assumption. We compare and evaluate the methods on simulated data and experimental data from a somatosensory-evoked response study. We find that the random field methods are conservative with or without smoothing, though with a 5 vertex FWHM smoothness, they are close to exact. Our permutation methods demonstrated exact specificity in simulation studies. In real data, the permutation method was not as sensitive as the RF method, although this could be due to violations of the random field theory assumptions.
我们描述了使用随机场和置换方法来检测从脑磁图(MEG)数据计算得到的电流密度的皮质约束图中的激活情况。这些方法适用于任何将事件相关脑磁图映射到配准皮质表面的逆成像方法。这些方法也可直接扩展到从事件相关脑电图(EEG)数据计算得到的图像。我们确定了控制跨空间或跨空间和时间的家族性错误率(FWER)的统计阈值。随机场和置换方法都使用原假设下最大统计量的分布来找到FWER阈值。前一种方法对数据的分布和平滑性做出假设并使用近似解析解,后一种方法对数据进行重采样并依赖经验分布。两种方法都考虑了皮质图中的空间和时间相关性。与先前神经成像中的非参数工作不同,我们解决了在没有高斯假设的情况下可能出现的非均匀特异性问题。我们在体感诱发电位研究的模拟数据和实验数据上比较和评估了这些方法。我们发现,无论是否进行平滑处理,随机场方法都较为保守,不过在5顶点半高宽(FWHM)平滑度下,它们接近精确值。我们的置换方法在模拟研究中展示了精确的特异性。在实际数据中,置换方法不如随机场方法敏感,尽管这可能是由于违反了随机场理论假设所致。