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Experimental design modulates variance in BOLD activation: The variance design general linear model

机译:实验设计调节BOLD激活中的方差:方差设计通用线性模型

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摘要

Typical fMRI studies have focused on either the mean trend in the blood‐oxygen‐level‐dependent (BOLD) time course or functional connectivity (FC). However, other statistics of the neuroimaging data may contain important information. Despite studies showing links between the variance in the BOLD time series (BV) and age and cognitive performance, a formal framework for testing these effects has not yet been developed. We introduce the variance design general linear model (VDGLM), a novel framework that facilitates the detection of variance effects. We designed the framework for general use in any fMRI study by modeling both mean and variance in BOLD activation as a function of experimental design. The flexibility of this approach allows the VDGLM to (a) simultaneously make inferences about a mean or variance effect while controlling for the other and (b) test for variance effects that could be associated with multiple conditions and/or noise regressors. We demonstrate the use of the VDGLM in a working memory application and show that engagement in a working memory task is associated with whole‐brain decreases in BOLD variance.
机译:典型的功能磁共振成像研究集中于血氧水平依赖性(BOLD)时间过程或功能连通性(FC)的平均趋势。但是,神经影像数据的其他统计信息可能包含重要信息。尽管研究表明BOLD时间序列(BV)的方差与年龄和认知能力之间存在联系,但尚未开发出用于测试这些影响的正式框架。我们介绍了方差设计通用线性模型(VDGLM),这是一种新颖的框架,可帮助检测方差效应。我们通过将BOLD激活的均值和方差建模为实验设计的函数,设计了可用于任何功能磁共振成像研究的通用框架。这种方法的灵活性允许VDGLM(a)在控制其他平均值的同时,对均值或方差效应进行推断,以及(b)测试可能与多种条件和/或噪声回归器相关的方差效应。我们演示了VDGLM在工作记忆应用程序中的使用,并表明参与工作记忆任务与全脑BOLD方差的减少有关。

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