PerSubs: A Graph-Based Algorithm for the Identification of Perturbed Subpathways Caused by Complex Diseases
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Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-319-56246-9_17
Reference37 articles.
1. Walker, M.G. 2001. Drug Target Discovery by Gene Expression Analysis Cell Cycle Genes. Current Cancer Drug Targets 1 (1): 73–83.
2. Leung, E.L., Z.W. Cao, Z.H. Jiang, H. Zhou, and L. Liu. 2013. Network-Based Drug Discovery by Integrating Systems Biology and Computational Technologies. Briefings in Bioinformatics 14 (4): 491–505.
3. Jin, L., et al. 2014. Pathway-Based Analysis Tools for Complex Diseases: A Review. Genomics, Proteomics & Bioinformatics 12 (5): 210–220.
4. Khatri, P., M. Sirota, and A.J. Butte. 2012. Ten Years of Pathway Analysis: Current Approaches and Outstanding Challenges. PLoS Computational Biology 8 (2): e1002375.
5. Wang, K., M. Li, and M. Bucan. 2007. Pathway-Based Approaches for Analysis of Genomewide Association Studies. The American Journal of Human Genetics 81 (6): 1278–1283.
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