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2014 | OriginalPaper | Chapter

A Novel Structure-Aware Sparse Learning Algorithm for Brain Imaging Genetics

Authors : Lei Du, Jingwen Yan, Sungeun Kim, Shannon L. Risacher, Heng Huang, Mark Inlow, Jason H. Moore, Andrew J. Saykin, Li Shen

Published in: Medical Image Computing and Computer-Assisted Intervention – MICCAI 2014

Publisher: Springer International Publishing

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Brain imaging genetics is an emergent research field where the association between genetic variations such as single nucleotide polymorphisms (SNPs) and neuroimaging quantitative traits (QTs) is evaluated. Sparse canonical correlation analysis (SCCA) is a bi-multivariate analysis method that has the potential to reveal complex multi-SNP-multi-QT associations. Most existing SCCA algorithms are designed using the soft threshold strategy, which assumes that the features in the data are independent from each other. This independence assumption usually does not hold in imaging genetic data, and thus inevitably limits the capability of yielding optimal solutions. We propose a novel structure-aware SCCA (denoted as S2CCA) algorithm to not only eliminate the independence assumption for the input data, but also incorporate group-like structure in the model. Empirical comparison with a widely used SCCA implementation, on both simulated and real imaging genetic data, demonstrated that S2CCA could yield improved prediction performance and biologically meaningful findings.

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Metadata
Title
A Novel Structure-Aware Sparse Learning Algorithm for Brain Imaging Genetics
Authors
Lei Du
Jingwen Yan
Sungeun Kim
Shannon L. Risacher
Heng Huang
Mark Inlow
Jason H. Moore
Andrew J. Saykin
Li Shen
Copyright Year
2014
Publisher
Springer International Publishing
DOI
https://doi.org/10.1007/978-3-319-10443-0_42

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