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首页> 外文期刊>NeuroImage >Componential Granger causality, and its application to identifying the source and mechanisms of the top-down biased activation that controls attention to affective vs sensory processing.
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Componential Granger causality, and its application to identifying the source and mechanisms of the top-down biased activation that controls attention to affective vs sensory processing.

机译:格兰杰因果关系及其在识别自上而下偏置激活的来源和机制中的应用,该激活控制了对情感与感觉过程的关注。

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We describe a new measure of Granger causality, componential Granger causality, and show how it can be applied to the identification of the directionality of influences between brain areas with functional neuroimaging data. Componential Granger causality measures the effect of y on x, but allows interaction effects between y and x to be measured. In addition, the terms in componential Granger causality sum to 1, allowing causal effects to be directly compared between systems. We show using componential Granger causality analysis applied to an fMRI investigation that there is a top-down attentional effect from the anterior dorsolateral prefrontal cortex to the orbitofrontal cortex when attention is paid to the pleasantness of a taste, and that this effect depends on the activity in the orbitofrontal cortex as shown by the interaction term. Correspondingly there is a top-down attentional effect from the posterior dorsolateral prefrontal cortex to the insular primary taste cortex when attention is paid to the intensity of a taste, and this effect depends on the activity of the insular primary taste cortex as shown by the interaction term. Componential Granger causality thus not only can reveal the directionality of effects between areas (and these can be bidirectional), but also allows the mechanisms to be understood in terms of whether the causal influence of one system on another depends on the state of the system being causally influenced. Componential Granger causality measures the full effects of second order statistics by including variance and covariance effects between each time series, thus allowing interaction effects to be measured, and also provides a systematic framework within which to measure the effects of cross, self, and noise contributions to causality. The findings reveal some of the mechanisms involved in a biased activation theory of selective attention.
机译:我们描述了格兰杰因果关系的一种新度量,即分量格兰杰因果关系,并展示了如何将其应用于具有功能性神经影像数据的大脑区域之间影响方向的识别。分量格兰杰因果关系度量y对x的影响,但允许测量y与x之间的相互作用。此外,部分Granger因果关系中的各项之和为1,从而可以在系统之间直接比较因果效应。我们展示了将部分Granger因果关系分析应用于fMRI研究,当关注味觉的愉悦时,从前外侧前额叶皮层到眶额皮层有自上而下的注意效果,并且这种效果取决于活动如相互作用项所示,在眼眶额皮质中。相应地,当注意味觉强度时,从后背外侧前额叶皮层到岛状主要味觉皮层有自顶向下的注意作用,这种作用取决于相互作用所显示的岛状主要味觉皮层的活性。术语。因此,分量格兰杰因果关系不仅可以揭示区域之间效应的方向性(而且这些效应可以是双向的),还可以根据一个系统对另一个系统的因果影响是否取决于系统的状态来理解这些机制。因果影响。分量格兰杰因果关系通过包括每个时间序列之间的方差和协方差效应来衡量二阶统计的全部效应,从而可以测量相互作用效应,并且还提供了一个系统的框架,可以在其中测量交叉,自我和噪声的影响因果关系。研究结果揭示了选择性注意偏向激活理论中涉及的一些机制。

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