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A novel technique for model reduction of biochemical reaction networks

Manvel Gasparyan (UGent) , Arnout Van Messem (UGent) and Shodhan Rao (UGent)
(2018) IFAC PAPERSONLINE. 51(19). p.28-31
Author
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Keywords
Chemical reaction networks, Enzyme kinetics, Graph theory, Model, reduction, Linkage classes, Stoichiometry, Kron reduction method

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Citation

Please use this url to cite or link to this publication:

MLA
Gasparyan, Manvel, Arnout Van Messem, and Shodhan Rao. “A Novel Technique for Model Reduction of Biochemical Reaction Networks.” Ifac Papersonline. Vol. 51. Amsterdam, The Netherlands: Elsevier Science, 2018. 28–31. Print.
APA
Gasparyan, M., Van Messem, A., & Rao, S. (2018). A novel technique for model reduction of biochemical reaction networks. IFAC PAPERSONLINE (Vol. 51, pp. 28–31). Presented at the 7th Conference on Foundation of Systems Biology in Engineering (FOSBE), Amsterdam, The Netherlands: Elsevier Science.
Chicago author-date
Gasparyan, Manvel, Arnout Van Messem, and Shodhan Rao. 2018. “A Novel Technique for Model Reduction of Biochemical Reaction Networks.” In Ifac Papersonline, 51:28–31. Amsterdam, The Netherlands: Elsevier Science.
Chicago author-date (all authors)
Gasparyan, Manvel, Arnout Van Messem, and Shodhan Rao. 2018. “A Novel Technique for Model Reduction of Biochemical Reaction Networks.” In Ifac Papersonline, 51:28–31. Amsterdam, The Netherlands: Elsevier Science.
Vancouver
1.
Gasparyan M, Van Messem A, Rao S. A novel technique for model reduction of biochemical reaction networks. IFAC PAPERSONLINE. Amsterdam, The Netherlands: Elsevier Science; 2018. p. 28–31.
IEEE
[1]
M. Gasparyan, A. Van Messem, and S. Rao, “A novel technique for model reduction of biochemical reaction networks,” in IFAC PAPERSONLINE, Chicago, IL, USA, 2018, vol. 51, no. 19, pp. 28–31.
@inproceedings{8579413,
  author       = {Gasparyan, Manvel and Van Messem, Arnout and Rao, Shodhan},
  booktitle    = {IFAC PAPERSONLINE},
  issn         = {2405-8963},
  keywords     = {Chemical reaction networks,Enzyme kinetics,Graph theory,Model,reduction,Linkage classes,Stoichiometry,Kron reduction method},
  language     = {eng},
  location     = {Chicago, IL, USA},
  number       = {19},
  pages        = {28--31},
  publisher    = {Elsevier Science},
  title        = {A novel technique for model reduction of biochemical reaction networks},
  url          = {http://dx.doi.org/10.1016/j.ifacol.2018.09.024},
  volume       = {51},
  year         = {2018},
}

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