高效多任务多核学习及其在癌症研究中的应用

Efficient Multitask Multiple Kernel Learning With Application to Cancer Research

IEEE Transactions on Cybernetics · 2021
被引 10
ABS 3

中文导读

提出一种基于Benders分解和森林公式的多任务多核学习方法,通过任务聚类提高计算效率,用于区分早期和晚期癌症,在任务数和聚类数增加时计算性能更优。

Abstract

Multitask multiple kernel learning (MKL) algorithms combine the capabilities of incorporating different data sources into the prediction model and using the data from one task to improve the accuracy on others. However, these methods do not necessarily produce interpretable results. Restricting the solutions to the set of interpretable solutions increases the computational burden of the learning problem significantly, leading to computationally prohibitive run times for some important biomedical applications. That is why we propose a multitask MKL formulation with a clustering of tasks and develop a highly time-efficient solution approach for it. Our solution method is based on the Benders decomposition and treating the clustering problem as finding a given number of tree structures in a graph; hence, it is called the forest formulation. We use our method to discriminate early-stage and late-stage cancers using genomic data and gene sets and compare our algorithm against two other algorithms. The two other algorithms are based on different approaches for linearization of the problem while all algorithms make use of the cutting-plane method. Our results indicate that as the number of tasks and/or the number of desired clusters increase, the forest formulation becomes increasingly favorable in terms of computational performance.

机器学习多核学习多任务学习癌症研究生物信息学