Biology Reference
In-Depth Information
[72] Chao D, Halloran M, Obenchain V, Longini IJ. FluTE, a publicly
available stochastic influenza epidemic simulation model. PLoS
Comput Biol 2010;6:e1000656.
[73] Bisset KR, Chen J, Feng X, Kumar VA, Marathe MV. EpiFast:
a fast algorithm for large scale realistic epidemic simulations
on distributed memory systems. In: Proceedings of the 23rd
International Conference on Supercomputing (ICS); 2009
p. 430-439.
[74] Ajelli M, Merler S. The impact of the unstructured contacts component
in influenza pandemic modeling. PLoS One 2008;3:e1509.
[76] Morris M, Kretzschmar M. Concurrent partnerships and the spread
of HIV. AIDS 1997;11:641
8.
[77] Moody J. The importance of relationship timing for diffusion:
indirect connectivity and STD infection risk. Soc Forces 2002;81:25.
[78] Goldenberg J, Shavitt Y, Shir E, S.Solomon S. Distributive
immunization of networks against viruses using the 'honey-pot'
architecture. Nat Phys 2005;1:184 e 8.
[79] Isella L, et al. What's in a crowd? Analysis of face-to-face
behavioral networks. J Theor Biol 2011;271:166 e 80.
[80] Kitsak M, et al. Identification of influential spreaders in complex
networks. Nat Phys 2010;6:888 e 93.
[81] International Air Transport Association, < http: //www.iata.org >
[82] Official Airline Guide, < http: //www.oag.com >
e
[75]
degli Atti MLC, et al. Mitigation measures for pandemic influenza
in Italy: an individual based model considering different scenarios.
PLoS One 2008;3:E1790.
Search WWH ::




Custom Search