Matrix factorization for biomedical link prediction and scRNA-seq data imputation: an empirical survey

Author:

Ou-Yang Le12,Lu Fan1,Zhang Zi-Chao3,Wu Min4

Affiliation:

1. Guangdong Key Laboratory of Intelligent Information Processing, Shenzhen Key Laboratory of Media Security, and Guangdong Laboratory of Artificial Intelligence and Digital Economy(SZ), College of Electronics and Information Engineering, Shenzhen University, Shenzhen, 518060, China

2. Shenzhen Institute of Artificial Intelligence and Robotics for Society, Shenzhen,518172, China

3. Institute of Science and Technology for Brain-Inspired Intelligence, Fudan University, Shanghai, 200433, China

4. Institute for Infocomm Research (I2R), A*STAR, 138632, Singapore

Abstract

Abstract Advances in high-throughput experimental technologies promote the accumulation of vast number of biomedical data. Biomedical link prediction and single-cell RNA-sequencing (scRNA-seq) data imputation are two essential tasks in biomedical data analyses, which can facilitate various downstream studies and gain insights into the mechanisms of complex diseases. Both tasks can be transformed into matrix completion problems. For a variety of matrix completion tasks, matrix factorization has shown promising performance. However, the sparseness and high dimensionality of biomedical networks and scRNA-seq data have raised new challenges. To resolve these issues, various matrix factorization methods have emerged recently. In this paper, we present a comprehensive review on such matrix factorization methods and their usage in biomedical link prediction and scRNA-seq data imputation. Moreover, we select representative matrix factorization methods and conduct a systematic empirical comparison on 15 real data sets to evaluate their performance under different scenarios. By summarizing the experimental results, we provide general guidelines for selecting matrix factorization methods for different biomedical matrix completion tasks and point out some future directions to further improve the performance for biomedical link prediction and scRNA-seq data imputation.

Publisher

Oxford University Press (OUP)

Subject

Molecular Biology,Information Systems

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