Biology Reference
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[4] B. Balasundaram, S. Butenko, and S. Trukhanov. Novel approaches for analyzing
biological networks. Journal of Combinatorial Optimization , 10:23-29, 2005.
[5] A. M. Bonvin. Flexible protein-protein docking. Current Opinion in Structural Biol-
ogy , 16(2):194-200, April 2006.
[6] S. Butenko and W. Wilhelm. Clique-detection models in computational biochemistry
and genomics. European Journal of Operational Research , to appear, 2008.
[7] C.W.Commander. Optimization Problems in Telecommunications with Military Ap-
plications . PhD thesis, University of Florida, 2007.
[8]
C. W. Commander, P. M. Pardalos, V. Ryabchenko, S. Uryasev, and G. Zrazhevsky.
The wireless network jamming problem. Journal of Combinatorial Optimization ,
14(4):481-498, 2007.
[9]
ILOG CPLEX. http://www.ilog.com/products/cplex, accessed March 2008.
[10]
C. Darwin. The Origin of Species . Murray, sixth edition, 1872.
[11]
J. Drews. Drug discovery: A historical perspective. Science , 287:1960-1964, March
2000.
[12]
M. R. Garey and D. S. Johnson. Computers and Intractability: A Guide to the Theory
of NP-Completeness . W.H. Freeman and Company, 1979.
[13]
D. E. Goldberg. Genetic Algorithms in Search, Optimization, and Machine Learning .
Addison-Wesley, 1989.
[14]
J. J. Gray. High-resolution protein-protein docking. Current Opinion in Structural
Biology , 16(2):183-93, April 2006.
[15]
C. Herzberg, L. A. Weidinger, B. Dorrbecker, S. Hubner, J. Stulke, and F. M. Com-
michau. Spine: A method for the rapid detection and analysis of protein-protein in-
teractions in vivo . Proteomics , 7(22):4032-5, November 2007.
[16]
T. Ito, T. Chiba, R. Ozawa, M. Yoshida, M. Hattori, and Y. Sakaki. A comprehen-
sive two-hybrid analysis to explore the yeast protein interactome. Proceedings of the
National Academy of Sciences , 98(8):4569-74, 2001.
[17]
T. Ito, K. Tashiro, S. Muta, R. Ozawa, T. Chiba, M. Nishizawa, K. Yamamoto,
S. Kuhara, and Y. Sakaki. Toward a protein-protein interaction map of the budding
yeast: A comprehensive system to examine two-hybrid interactions in all possible
combinations between the yeast proteins. Proceedings of the National Academy of
Sciences , 97(3):1143-1147, 2000.
[18]
V. Krebs. Uncloaking terrorist networks. First Monday , 7 , 2002.
[19]
R. P. Mondaini and P. M. Pardalos, editors. Mathematical Modeling of Biosystems .
Springer, 2008.
[20]
Conference on Drug Discovery Chemistry. La Jolla, CA, April 28-30 2008.
[21]
P. M. Pardalos,
V. Boginski,
and
A. Vazacopoulos,
editors. Data Mining
in
Biomedicine . Springer, 2007.
[22]
P. M. Pardalos and J. Principe, editors. Biocomputing . Kluwer Academic Publishers,
2002.
[23]
P. M. Pardalos, J. C. Sackellares, P. Carney, and L. Iasemidis, editors. Quantitative
Neuroscience . Kluwer Academic Publishers, 2004.
[24]
S. L. Schreiber. Target-oriented and diversity-oriented organic synthesis in drug dis-
covery. Science , 275(5460):1964-1969, 2000.
[25]
B. Schwikowski, P. Uetz, and S. Fields. A network of protein-protein interactions in
yeast. Nature Biotechnology , 18(12):1257-61, December 2000.
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