Probabilistic partial least squares model: Identifiability, estimation and application

Publication date

2018-09-01

Authors

El Bouhaddani, SaidORCID 0000-0002-2279-4337
Uh, Hae-WonORCID 0000-0003-4195-7872
Hayward, Caroline
Jongbloed, Geurt
Houwing-Duistermaat, JeanineORCID 0000-0002-4505-7137

Editors

Advisors

Supervisors

Document Type

Article

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License

taverne

Abstract

With a rapid increase in volume and complexity of data sets, there is a need for methods that can extract useful information, for example the relationship between two data sets measured for the same persons. The Partial Least Squares (PLS) method can be used for this dimension reduction task. Within life sciences, results across studies are compared and combined. Therefore, parameters need to be identifiable, which is not the case for PLS. In addition, PLS is an algorithm, while epidemiological study designs are often outcome-dependent and methods to analyze such data require a probabilistic formulation. Moreover, a probabilistic model provides a statistical framework for inference. To address these issues, we develop Probabilistic PLS (PPLS). We derive maximum likelihood estimators that satisfy the identifiability conditions by using an EM algorithm with a constrained optimization in the M step. We show that the PPLS parameters are identifiable up to sign. A simulation study is conducted to study the performance of PPLS compared to existing methods. The PPLS estimates performed well in various scenarios, even in high dimensions. Most notably, the estimates seem to be robust against departures from normality. To illustrate our method, we applied it to IgG glycan data from two cohorts. Our PPLS model provided insight as well as interpretable results across the two cohorts.

Keywords

Dimension reduction, EM algorithm, Identifiability, Inference, Probabilistic partial least squares, Taverne, Statistics and Probability, Numerical Analysis, Statistics, Probability and Uncertainty

Citation

el Bouhaddani, S, Uh, H W, Hayward, C, Jongbloed, G & Houwing-Duistermaat, J 2018, 'Probabilistic partial least squares model : Identifiability, estimation and application', Journal of Multivariate Analysis, vol. 167, pp. 331-346. https://doi.org/10.1016/j.jmva.2018.05.009