1ROTA PA, et al. Characterization of a Novel Coronavirus Associated with Severe Acute Respiratory Syndrome[EB]. Science. 1085952, Published Online May 1,2003,10 : 1126.
2LIPSITCH M, et al. Transmission Dymamics and Control of Severe Acute Respiratory Syndrome[EB]. Science. 1086616, Published Online May 23,2003,10 : 1126.
3RILEY S, et al. Transmission Dynamics of the Aetiological Agent of Sever Acute Respiratory Syndrom (SARS) in Hong Kong, The Impact of Public Health Interventions[EB]. Science. 1086478, Published online May 23, 200310: 1126.
4Durye M, Caraco T, Gardner G, et al. Population dispersion and equilibrium infection frequency in a spatial epidemic[J]. Physic D, August,1999,20,132(4):511-519.
5Ahmed E, Agiza HN, Hassan SZ. On modeling hepatitis B transmission using cellular automata[J].Journal of Statistical Physics, 1998,92, Nos3/4.
6WOLFRAM S. Computation Theory of Cellular Automata, in: Cellular Automata and Complexity[M]. Addison Wesley, Reading, MA, 1994. 159-202 Originally published:Comm Math Ploys, 1984,96 : 15-57.
7AHMED E, AGIZA HN. On modeling epidemics Including latency, incubation and variable susceptibility[J]. Physica A, May 1,1998,253(1-4) :347-352.
8MANIATTY, et al. Population dispersion and equilibrium infection frequency in a spatial epidemic[J]. Physica D, August 20,1999,132(4):511-519
9MARTINS, et al. A cellular automata model for citrus variegated chlorosis[J].Physica A, June 1, 2001, 295(1-2) :42-48.