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Mapping cognitive ontologies to and from the brain

机译:将认知本体映射到大脑中

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Imaging neuroscience links brain activation maps to behavior and cognition via correlational studies. Due to the nature of the individual experiments, based on eliciting neural response from a small number of stimuli, this link is incomplete, and unidirectional from the causal point of view. To come to conclusions on the function implied by the activation of brain regions, it is necessary to combine a wide exploration of the various brain functions and some inversion of the statistical inference. Here we introduce a methodology for accumulating knowledge towards a bidirectional link between observed brain activity and the corresponding function. We rely on a large corpus of imaging studies and a predictive engine. Technically, the challenges are to find commonality between the studies without denaturing the richness of the corpus. The key elements that we contribute are labeling the tasks performed with a cognitive ontology, and modeling the long tail of rare paradigms in the corpus. To our knowledge, our approach is the first demonstration of predicting the cognitive content of completely new brain images. To that end, we propose a method that predicts the experimental paradigms across different studies.
机译:映像神经科学通过相关研究将脑激活映射到行为和认知。由于个体实验的性质,基于来自少量刺激的引出神经反应,该链接是不完全的,并且从因果角度来看是单向的。为了结论脑区激活所暗示的功能,有必要结合各种大脑功能的广泛探索和统计推理的一些反演。在这里,我们介绍一种用于累积朝向观察到的大脑活动和相应功能之间的双向链路的知识的方法。我们依靠大型成像研究和预测发动机。从技术上讲,挑战是在没有变化语料库的丰富性的情况下找到研究之间的共性。我们贡献的关键元素正在标记具有认知本体的任务,并在语料库中建模罕见的范式长尾。据我们所知,我们的方法是第一次证明预测完全新的脑图像的认知含量。为此,我们提出了一种预测不同研究的实验范例的方法。

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