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References
Barrett, C. L., Eubank, S. G., & Smith, J. P. (2005). If smallpox strikes Portland :::. Scientific
American, 292 (3), 54-61. doi: 10.1038/scientificamerican0305-54 .
Carpenter, T. E. (2001). Methods to investigate spatial and temporal clustering in veteri-
nary epidemiology. Preventive Veterinary Medicine, 48 (4), 303-320. doi: 10.1016/S0167-
5877(00)00199-9 .
Cowled, B., Ward, M. P., Hamilton, S., & Garner, G. (2009). The equine influenza epidemic in
Australia: Spatial and temporal descriptive analyses of a large propagating epidemic. Preventive
Veterinary Medicine, 92 (1-2), 60-70. doi: 10.1016/j.prevetmed.2009.08.006 .
Firestone, S. M., Ward, M. P., Christley, R. M., & Dhand, N. K. (2011). The importance of location
in contact networks: Describing early epidemic spread using spatial social network analysis.
Preventive Veterinary Medicine, 102 (3), 185-195. doi: 10.1016/j.prevetmed.2011.07.006 .
Freeman, L. C. (1978). Centrality in social networks conceptual clarification. Social Networks,
1 (3), 215-239. doi: 10.1016/0378-8733(78)90021-7 .
Gong, H., DeGaetano, A. T., & Harrington, L. C. (2011). Climate-based models for West Nile
Culex mosquito vectors in the Northeastern US. International Journal of Biometeorology,
55 (3), 435-446. doi : 10.1007/s00484-010-0354-9 .
Huang, C. Y., Tsai, Y. S., & Sun, C. T. (2010). Effects of friend-making resources costs
and remembering on acquaintance networks. PHYSICA A: Statistical Mechanics and Its
Applications, 389 (3), 604-622. doi: 10.1016/j.physa.2009.09.038 .
Jones, J. H., & Handcock, M. S. (2003). Social networks (communication arising): Sexual contacts
and epidemic thresholds. Nature, 423 (6940), 605-606.
Knox, E., & Bartlett, M. (1964). The detection of space-time interactions. Journal of the Royal
Statistical Society, Series C, 13 (1), 25-30.
Kulldorff, M., & Hjalmars, U. (1999). The Knox method and other tests for space-time interaction.
Biometrics, 55 (2), 544-552. doi: 10.1111/j.0006-341X.1999.00544.x .
Kvanli, A. H., Pavur, R. J., & Keeling, K. B. (2005). Concise managerial statistics (1st ed., p. 656).
Cincinnati: South-Western College Publishing.
Morin, C. W., & Comrie, A. C. (2010). Modeled response of the West Nile virus vector
Culex quinquefasciatus to changing climate using the dynamic mosquito simulation model.
International Journal of Biometeorology, 54 (5), 517-529. doi: 10.1007/s00484-010-0349-6 .
Pastor-Satorras, R., & Vespignani, A. (2002). Immunization of complex networks. Physical Review
E, 65 (3), 36104. doi : 10.1103/PhysRevE.65.036104 .
Tsai, Y.-S., Huang, C.-Y., Wen, T.-H., Sun, C.-T., & Yen, M.-Y. (2011). Integrating epidemic
dynamics with daily commuting networks: Building a multilayer framework to assess influenza
A (H1N1) intervention policies. Simulation, 87 (5), 385-405. doi: 10.1177/0037549710379481 .
Wen, T.-H., Lin, N. H., Lin, C.-H., King, C.-C., & Su, M.-D. (2006). Spatial mapping of temporal
risk characteristics to improve environmental health risk identification: A case study of a
dengue epidemic in Taiwan. Science of the Total Environment, 367 (2-3), 631-640. doi: 10.
1016/j.scitotenv.2006.02.009 .
Wen, T.-H., Lin, M.-H., & Fang, C.-T. (2012). Population movement and vector-borne disease
transmission: Differentiating spatial-temporal diffusion patterns of commuting and non-
commuting dengue cases. Annals of the Association of American Geographers,
102 (5),
1026-1037. doi: 10.1080/00045608.2012.671130 .
Wilesmith, J. W., Stevenson, M. A., King, C. B., & Morris, R. S. (2003). Spatio-temporal
epidemiology of foot-and-mouth disease in two counties of Great Britain in 2001. Preventive
Veterinary Medicine, 61 (3), 157-170. doi: 10.1016/j.prevetmed.2003.08.002 .
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