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Identifying fMRI Model Violations with Lagrange Multiplier Tests

机译:识别功能磁共振成像模型的违规行为拉格朗日乘子测试

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摘要

The standard modeling framework in Functional Magnetic Resonance Imaging (fMRI) is predicated on assumptions of linearity, time invariance and stationarity. These assumptions are rarely checked because doing so requires specialised software, although failure to do so can lead to bias and mistaken inference. Identifying model violations is an essential but largely neglected step in standard fMRI data analysis.Using Lagrange Multiplier testing methods we have developed simple and efficient procedures for detecting model violations such as non-linearity, non-stationarity and validity of the common Double Gamma specification for hemodynamic response. These procedures are computationally cheap and can easily be added to a conventional analysis.The test statistic is calculated at each voxel and displayed as a spatial anomaly map which shows regions where a model is violated.The methodology is illustrated with a large number of real data examples.
机译:功能磁共振成像(FMRI)中的标准建模框架是基于线性,时间不变性和实用性的假设。这些假设很少被检查,因为这样做需要专门的软件,虽然未能这样做可能会导致偏见和错误的推断。识别模型违规是标准FMRI数据分析中必不可少的忽视步骤.LAGRANGMAGE乘法器测试方法,我们制定了简单高效的程序,用于检测模型违规,例如非线性,非公平性和常见双伽马规范的有效性血流动力学反应。这些程序是计算值便宜的,并且可以很容易地添加到传统分析中。在每个体素下计算测试统计数据,并显示为空间异常映射,示出了侵犯了模型的区域。使用大量实际数据示出了方法例子。

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