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Disentanglement of Session and Plasticity Effects in Longitudinal fMRI Studies

机译:纵向fMRI研究中的会话分离和可塑性效应

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In longitudinal studies, such as those about neurocognitive rehabilitation or brain plasticity, functional MRI sessions are subsequently recorded to detect how the patterns of activation differs through time. Usually, consecutive recordings are interleaved by a period of treatment or training. The general purpose of fMRI data analysis is to compute a brain map accounting for plasticity effects on BOLD response. Specifically, the challenge of longitudinal studies analysis is to disentangle plain session effect from the plasticity one. To date, a commonly used practice is to separately compute these two effects and then combine results through a comparison. The brain map for session effect is obtained with a univari-ate analysis of the contrast between two subsequent recordings. We argue that such a brain map includes also the bias of the coregistration error related to the alignment of two sessions. Here we do not propose a method to reduce the coregistration error but a method to reduce the effect of this bias when estimating the session effect. We show how, combining functional hyperalignment and multivariate pattern analysis, it is possible to summarize a single brain map that accounts for plasticity effect without the session effect.
机译:在纵向研究中,例如关于神经认知康复或脑可塑性的研究中,随后会记录功能性MRI会话以检测激活方式随时间的变化。通常,连续的录音会经过一段时间的治疗或训练而交错。 fMRI数据分析的一般目的是计算一个大脑图,说明可塑性对BOLD反应的影响。具体而言,纵向研究分析的挑战是将简单会话效应与可塑性区分开。迄今为止,一种常用的做法是分别计算这两种效果,然后通过比较将结果合并。会话效果的大脑图是通过对两个后续记录之间的对比度进行单变量分析而获得的。我们认为,这样的脑图还包括与两个会话的对齐有关的共配误差的偏差。在这里,我们没有提出减少共容误差的方法,而是提出了一种在估计会话效应时降低这种偏差的效应的方法。我们展示了如何结合功能性超对齐和多元模式分析,来总结单个大脑图谱,从而说明没有会话效应的可塑性效应。

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  • 会议地点 Nagoya(JP)
  • 作者单位

    NeuroInformatics Laboratory (NILab), Fondazione Bruno Kessler, Trento, Italy Centro Interdipartimentale Mente e Cervello (CIMeC), Universita di Trento, Italy;

    NeuroInformatics Laboratory (NILab), Fondazione Bruno Kessler, Trento, Italy Centro Interdipartimentale Mente e Cervello (CIMeC), Universita di Trento, Italy;

    NeuroInformatics Laboratory (NILab), Fondazione Bruno Kessler, Trento, Italy Center for Neurocognitive Rehabilitation (CeRiN), Universita di Trento, Italy;

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