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Published in: BMC Proceedings 7/2016

Open Access 01-10-2016 | Proceedings

Comparing machine learning and logistic regression methods for predicting hypertension using a combination of gene expression and next-generation sequencing data

Authors: Elizabeth Held, Joshua Cape, Nathan Tintle

Published in: BMC Proceedings | Special Issue 7/2016

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Abstract

Machine learning methods continue to show promise in the analysis of data from genetic association studies because of the high number of variables relative to the number of observations. However, few best practices exist for the application of these methods. We extend a recently proposed supervised machine learning approach for predicting disease risk by genotypes to be able to incorporate gene expression data and rare variants. We then apply 2 different versions of the approach (radial and linear support vector machines) to simulated data from Genetic Analysis Workshop 19 and compare performance to logistic regression. Method performance was not radically different across the 3 methods, although the linear support vector machine tended to show small gains in predictive ability relative to a radial support vector machine and logistic regression. Importantly, as the number of genes in the models was increased, even when those genes contained causal rare variants, model predictive ability showed a statistically significant decrease in performance for both the radial support vector machine and logistic regression. The linear support vector machine showed more robust performance to the inclusion of additional genes. Further work is needed to evaluate machine learning approaches on larger samples and to evaluate the relative improvement in model prediction from the incorporation of gene expression data.
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Metadata
Title
Comparing machine learning and logistic regression methods for predicting hypertension using a combination of gene expression and next-generation sequencing data
Authors
Elizabeth Held
Joshua Cape
Nathan Tintle
Publication date
01-10-2016
Publisher
BioMed Central
Published in
BMC Proceedings / Issue Special Issue 7/2016
Electronic ISSN: 1753-6561
DOI
https://doi.org/10.1186/s12919-016-0020-2

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