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首页> 外文期刊>NeuroImage >Modeling regional and psychophysiologic interactions in fMRI: the importance of hemodynamic deconvolution.
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Modeling regional and psychophysiologic interactions in fMRI: the importance of hemodynamic deconvolution.

机译:在fMRI中建模区域和心理生理相互作用:血液动力学解卷积的重要性。

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摘要

The analysis of functional magnetic resonance imaging (fMRI) time-series data can provide information not only about task-related activity, but also about the connectivity (functional or effective) among regions and the influences of behavioral or physiologic states on that connectivity. Similar analyses have been performed in other imaging modalities, such as positron emission tomography. However, fMRI is unique because the information about the underlying neuronal activity is filtered or convolved with a hemodynamic response function. Previous studies of regional connectivity in fMRI have overlooked this convolution and have assumed that the observed hemodynamic response approximates the neuronal response. In this article, this assumption is revisited using estimates of underlying neuronal activity. These estimates use a parametric empirical Bayes formulation for hemodynamic deconvolution.
机译:功能磁共振成像(fMRI)时间序列数据的分析不仅可以提供有关任务相关活动的信息,还可以提供有关区域之间的连通性(功能或有效)以及行为或生理状态对该连通性的影响的信息。在其他成像方式(例如正电子发射断层扫描)中也进行了类似的分析。然而,功能磁共振成像是独特的,因为有关基础神经元活动的信息已被过滤或与血液动力学响应功能卷积。以前在功能磁共振成像中对区域连通性的研究忽略了这种卷积,并假设观察到的血液动力学反应近似于神经元反应。在本文中,使用基本神经元活动的估计值重新讨论了该假设。这些估计使用参数经验贝叶斯公式进行血流动力学反卷积。

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