Comput. Biol. Med. - Finding multivariate outliers in fMRI time-series data.

Tópicos

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Resumo

A fundamental challenge for researchers studying the brain is to explain how distributed patterns of brain activity relate to a specific representation or computation. Multivariate techniques are therefore becoming increasingly popular for pattern localization of functional magnetic resonance imaging (fMRI) data. The increased power of these techniques can be offset by their susceptibility to multivariate outliers, a problem not directly encountered when fMRI data are analyzed in more common univariate analysis techniques. We test how two algorithms, High Dimensional Blocked Adaptive Computationally Efficient Outlier Nominators (HD BACON) and Principal Component based Outlier detection (PCOut), can detect multivariate outliers in high-dimensional fMRI data, in which the number of variables is larger than the number of observations. We show how these methods can be applied to individual, voxel time-series to identify outlying voxels within a region of interest. Finally, we compare these methods with simulated data to identify which aspects of the data each method is most sensitive to. Voxels identified by both algorithms were primarily on the edges of univariate activation clusters and near the boundaries between different tissue types. Simulation results showed the PCOut outperformed HD BACON, maintaining both high sensitivity and specificity across a wide range of outlier contamination percentages. Our results suggest that multivariate analysis of fMRI can benefit from including multivariate outlier detection as a routine data quality check prior to model fitting.

Resumo Limpo

fundament challeng research studi brain explain distribut pattern brain activ relat specif represent comput multivari techniqu therefor becom increas popular pattern local function magnet reson imag fmri data increas power techniqu can offset suscept multivari outlier problem direct encount fmri data analyz common univari analysi techniqu test two algorithm high dimension block adapt comput effici outlier nomin hd bacon princip compon base outlier detect pcout can detect multivari outlier highdimension fmri data number variabl larger number observ show method can appli individu voxel timeseri identifi out voxel within region interest final compar method simul data identifi aspect data method sensit voxel identifi algorithm primarili edg univari activ cluster near boundari differ tissu type simul result show pcout outperform hd bacon maintain high sensit specif across wide rang outlier contamin percentag result suggest multivari analysi fmri can benefit includ multivari outlier detect routin data qualiti check prior model fit

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