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One side lattice memory reduced ordering function allows discrimination in resting state fMRI

机译:一侧晶格记忆减少的排序功能允许在静止状态下进行功能核磁共振成像

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Currently there is a lot effort to define neurological biomarkers from resting state fMRI data for different neurological diseases. fMRI voxels are high dimensional vectors, so that dimensional reduction, to scalar values if possible, is highly desirable. At the same time, biomarkers are to be provided as brain localizations which may have an anatomical interpretation. A general procedure consists in the reduction of fMRI data to scalar values, which are then entered in a feature selection process to obtain the desired localizations of discriminant voxel sites in the brain. These voxel sites may be interpreted as biomarkers. Classification is performed on the feature vectors extracted from the selected brain voxel sites. In this paper, we follow an approach born from Multivariant Mathematical Morphology in order to obtain meaningful orderings on multivariate data. We define a supervised /i-ordering defined on the fMRI time series by the response of Lattice Auto-associative Memories (LAAM) built from specific fMRI voxels. Instead of performing morphological processing based on the induced ordering, we use the LAAM supervised /i-function map for feature selection and feature extraction. We perform a classification experiment on a set of resting state fMRI images of schizophrenia patients with and without a history of auditive hallucinations obtaining high accuracy with one side LAAM /i-function.
机译:目前努力定义神经系统生物标志物,从静息状态进行不同的神经疾病。 FMRI体素是高尺寸矢量,使得尺寸减小,如果可能的话,是标量值,是非常理想的。同时,将提供生物标志物作为脑本地化,这可能具有解剖解释。一般程序在于将FMRI数据的减少到标量值,然后在特征选择过程中输入,以获得大脑中判别体素位点的所需本地化。这些体素网站可以被解释为生物标志物。对从所选脑体素位点提取的特征向量进行分类。在本文中,我们遵循从多变量数学形态出生的方法,以便在多变量数据上获得有意义的排序。我们通过特定FMRI体素构建的晶格自动关联存储(LAAM)的响应来定义在FMRI时间序列上定义的监督/ I订购。我们使用LAAM监督/ I函数映射来特征选择和特征提取来而不是基于所诱导的顺序进行形态处理。我们对一系列休息状态的精神分裂症患者的休息状态模拟进行了分类实验,无论是高精度的幻觉历史,是否通过一面LAAM / I函数获得高精度。

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