Ehsan Ullah, Ph.D.
Affiliations: | 2014 | Computer Science | Tufts University, Boston |
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Computer ScienceGoogle:
"Ehsan Ullah"Parents
Sign in to add mentorKyongbum Lee | grad student | 2014 | Tufts | |
(Pathway Analysis of Metabolic Networks using Graph Theoretical Approaches.) |
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Publications
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Ullah E, Yosafshahi M, Hassoun S. (2019) Towards scaling elementary flux mode computation. Briefings in Bioinformatics |
Mall R, Ullah E, Kunji K, et al. (2018) An unsupervised disease module identification technique in biological networks using novel quality metric based on connectivity, conductance and modularity F1000research. 7: 378 |
Hassanpour N, Ullah E, Yousofshahi M, et al. (2017) Selection Finder (SelFi): A computational metabolic engineering tool to enable directed evolution of enzymes. Metabolic Engineering Communications. 4: 37-47 |
Ullah E, Aeron S, Hassoun S. (2016) gEFM: An Algorithm for Computing Elementary Flux Modes Using Graph Traversal. Ieee/Acm Transactions On Computational Biology and Bioinformatics / Ieee, Acm. 13: 122-34 |
Ullah E, Walker M, Lee K, et al. (2015) PreProPath: An Uncertainty-Aware Algorithm for Identifying Predictable Profitable Pathways in Biochemical Networks. Ieee/Acm Transactions On Computational Biology and Bioinformatics / Ieee, Acm. 12: 1405-1415 |
Ansar M, Santos-Cortez RL, Saqib MA, et al. (2015) Mutation of ATF6 causes autosomal recessive achromatopsia. Human Genetics |
Sridharan GV, Ullah E, Hassoun S, et al. (2015) Discovery of substrate cycles in large scale metabolic networks using hierarchical modularity. Bmc Systems Biology. 9: 5 |
Hassanpour N, Ullah E, Yousofshahi M, et al. (2015) Enabling selection in directed evolution of enzymes via cellular engineering Synthetic Biology: Engineering, Evolution, and Design Conference 2015, Seed 2015. 2: 540-551 |
Yousofshahi M, Ullah E, Stern R, et al. (2013) MC3: a steady-state model and constraint consistency checker for biochemical networks. Bmc Systems Biology. 7: 129 |