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培根:大脑激活和改变的反向推理工具。

BACON: A tool for reverse inference in brain activation and alteration.

机构信息

GCS-fMRI, Koelliker Hospital and Department of Psychology, University of Turin, Turin, Italy.

Department of Psychology, University of Turin, Turin, Italy.

出版信息

Hum Brain Mapp. 2021 Aug 1;42(11):3343-3351. doi: 10.1002/hbm.25452. Epub 2021 May 15.

Abstract

Over the past decades, powerful MRI-based methods have been developed, which yield both voxel-based maps of the brain activity and anatomical variation related to different conditions. With regard to functional or structural MRI data, forward inferences try to determine which areas are involved given a mental function or a brain disorder. A major drawback of forward inference is its lack of specificity, as it suggests the involvement of brain areas that are not specific for the process/condition under investigation. Therefore, a different approach is needed to determine to what extent a given pattern of cerebral activation or alteration is specifically associated with a mental function or brain pathology. In this study, we present a new tool called BACON (Bayes fACtor mOdeliNg) for performing reverse inference both with functional and structural neuroimaging data. BACON implements the Bayes' factor and uses the activation likelihood estimation derived-maps to obtain posterior probability distributions on the evidence of specificity with regard to a particular mental function or brain pathology.

摘要

在过去几十年中,已经开发出了强大的基于 MRI 的方法,这些方法提供了基于体素的大脑活动图和与不同条件相关的解剖变异图。对于功能或结构 MRI 数据,正向推理试图确定给定的心理功能或大脑障碍涉及哪些区域。正向推理的一个主要缺点是它缺乏特异性,因为它表明大脑区域的参与对于研究中的过程/条件不是特异性的。因此,需要一种不同的方法来确定特定的大脑激活或改变模式与特定的心理功能或大脑病理学有多大程度的关联。在这项研究中,我们提出了一种称为 BACON(贝叶斯因子模型)的新工具,用于对功能和结构神经影像学数据进行逆向推理。BACON 实现了贝叶斯因子,并使用激活可能性估计得出的映射来获得关于特定心理功能或大脑病理学特异性的证据的后验概率分布。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ffc4/8249901/eb66e85d17e4/HBM-42-3343-g006.jpg

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