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Quantitative Analysis of Arterial Spin Labeling FMRI Data Using a General Linear Model

机译:一般线性模型的动脉旋转标记FMRI数据的定量分析

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摘要

Arterial Spin Labeling techniques can yield quantitative measures of perfusion by fitting a kinetic model to difference images (tagged-control). Because of the noisy nature of the difference images investigators typically average a large number of tagged versus control difference measurements over long periods of time. This averaging requires that the perfusion signal be at a steady state and not at the transitions between active and baseline states in order to quantitatively estimate activation induced perfusion. This can be an impediment for FMRI task experiments. In this work, we introduce a general linear model (GLM) that specifies BOLD effects and ASL modulation effects and translate them into meaningful, quantitative measures of perfusion by using standard tracer kinetic models. We show that there is a strong association between the perfusion values using our GLM method and the traditional subtraction method, but that our GLM method is more robust to noise.

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