科研项目:
论文目录 (以时间为序)
1. Xiao Y., Tang S., Chen J., Permanence and periodic solution in competitive system with feedback controls. Math.Comput.Modelling,1998,27(6): 33-37.
2. Xiao Y., Chen L., Effects of toxicanta on a stage-structure population growth model. Appl Math. Comput. 2001, 123(1): 63-73.
3. Xiao Y., Chen L., Modeling and analysis of a predator-prey model with disease in the prey. Math. Biosci. 2001, 171(1): 59-82.
4. Xiao Y., Chen L., Analysis of a three species eco-epidemiological model. J. Math. Anal. Appl. 2001, 258(2): 733-754.(SCI)
5. Xiao Y., Chen L., Dynamical behavior for a stage structure SIR infectious disease model . Nonl. Anal. RWA 2002, 3:175-286.
6. Xiao Y., Cheng D., Tang S., Dynamic complexities in predator-prey ecosystem models with age-structure for predator. Chaos, Solitons & Fractals.2002, 14: 1403-1411.(SCI)
7. Xiao Y., Chen L., A ratio-dependent predator-prey model with disease in the prey. Appl. Math. Comput. 2002, 131: 397-414.
8. Xiao Y., Chen L., Global stability for a predator-prey with stage structure for the predator. 数学学报(英文版) 2003, 19(2): 1-11.
9. Xiao Y., Van Den Bosch, F., The dynamics of an eco-epidemic model concerning biological control. Ecol. Modelling. 2003,168: 203-214.(SCI)
10. Xiao Y., Bowers R., Clancy D., French N., Understanding the dynamics of Salmonella infections in dairy herds: a modeling approach. J. Theor. Biol. 2005, 233: 159-175.(SCI)
11. Tang S., Xiao Y., Chen L., Cheke R.A., Integrated pest management models and their dynamical behaviour. Bull. Math.Biol. 2005, 67: 115-135.
12. Tang S., Xiao Y., Clancy D., New modelling approach concerning integrated disease control and cost-effectivity. Nonl. Anal. TMA.2005,63: 439-471.
13. Xiao Y., Cheng D., Qin H., Optimal impulsive control in periodic ecosystem. Systems & Control Letters 2006, 55: 558-565. 26. Xiao Y., Clancy D., French N., Bowers R., A semi-stochastic model for Salmonella infection in a multigroup herd. Math Biosci. 2006, 200: 214-233.
14. Xiao Y., French N., Bowers R., Clancy D., Pair approximations and the inclusion of indirect transmission: theory and application to between farm transmission Salmonella. J. Theor. Biol. 2007, 244: 532-540. (SCI)
15. Xiao Y., Bowers R., Clancy D., French N., Dynamics of infection with multiple transmission mechanisms in unmanaged/managed animal populations. Theor. Popul. Biol., 2007, 71: 408-423. (SCI)
16. S Tang, Xiao Y., One-compartment model with Michaelis-Menten elimination kinetics and therapeutic window: an analytical approach. J Pharmacokinet Pharmacodyn, 2007, 34: 807–827. (SCI)
17. Tang S., Xiao Y., Cheke R.A., Multiple attractors of host-parasitoid models with integrated pest management strategies: eradication, persistence and outbreak. Theor. Popul. Biol. 2008, 73: 181–197.
18. 唐三一, 肖燕妮, 《单种群生物动力系统》,科学出版社, 2008年6月, 67.7万字, 552页。
19. Xiao Y., Bowers R.,Tang S., The effect of delayed host self-regulation on host-pathogen population cycles in forest insects. J. Theor. Biol., 2009, 258(2): 240-249.
20. Tang S., Cheke, R., Xiao Y., Effects of Predator and Prey Dispersal on Success or Failure of Biological Control, Bull. Math. Biol., 2009, 71: 2025–2047. (SCI)
21. Xiao Y., A semi-stochastic model for HIV population Dynamics, I. Jour. Biomath., 2009, 2: 391-404. (SCI)
22. Tang S., Xiao Y., Yang Y., Zhou Y., Wu J., Ma Z., Community based measures for mitigating the 2009 H1N1 pandemic in China. PLoS ONE, 2010, 5:1-11.
23. Xiao Y., Tang S.Y. Dynamics of infection with nonlinear incidence in a simple vaccination model. Nonl. Anal. RWA. 2010, 11: 4154-4163. (SCI)
24. Yang Y., Xiao Y., Threshold dynamics for an HIV model in periodic environments, J. Math. Anal. Appl.,2010, 361, 59–68.
25. Yang Y., Xiao Y., The effects of population dispersal and pulse vaccination on disease control. Math.Computer Modelling 2010, 52: 1591-.1604. (SCI)
26. Xiao Y., Zhou Y., Tang S., Modelling disease spread in dispersal networks at two levels. Math. Med. Biol., 2011, 28: 227−244. (SCI)
27. Xiao, Y., Xu, X., Tang, S., Sliding Mode Control of Outbreaks of Emerging Infectious Diseases, Bull. Math.Biol. 74(2012), 2403-2422
28. Wang X., Xiao Y., Wang J., Lu X., A mathematical model of effects of environmental contamination and presence of volunteers on hospital infections in China. J. Theor. Biol., 2012, 293: 161–173. (SCI)
29. Yang Y., Xiao Y., Threshold dynamics for compartmental epidemic models with impulses. Nonlinear Analysis: RWA. 2012, 13: 224–234. (SCI)
30. Yang Y., Xiao Y., Wang N., Wu J., Optimal control control of drug therapy: Melding pharmacokinetics with viral dynamics, Biosystems, 107(2012), 174-185.
31. Tang, S, Xiao, Y., Yuan, L., Cheke, R. A, Wu, J., Campus quarantine (Fengxiao) for curbing emergent infectious diseases: Lessons from mitigating A/H1N1 in
32. Tang S., Xiao Y., Wang N., Wu H., Piecewise HIV virus dynamic model with CD4(+) T cell count-guided therapy: I, J. Theor.Biol., 308(2012), 123-134. (SCI)
33. Tang S., Liang J., Xiao Y., Sliding bifurcations of Filippov two stage pest control models with economic thresholds.
34. 肖燕妮,周义仓,唐三一,《生物数学原理》,西安交通大学出版社,2012年2月。
35. Xiao Y., Tang S., Zhou Y., R.Smith?, Wu J., Wang N., Predicting the HIV/AIDS epidemic and measuring the effect of mobility in mainland China. J. Theor. Biol. 2013, 317: 271–285.
36. Xiao Y., Zhao T., Tang S., Dynamics of an infectious disease with media/ psychology induced non-smooth incidence, Math Biosci Eng. 2013, 10: 445-461.
37. Xiao Y., Miao H., Tang S., Wu H., Modeling antiretroviral drug responses for HIV-1 infected patients using differential equation models, Advanced Drug Delivery Reviews, 2013, 65: 940-953.
38. Xu X., Xiao Y., Wang N., Modeling sexual transmission of HIV/AIDS in Jiangsu province, China, Math Method in Applied Sciences, 2013, 36: 234-248.
39. Wang X., Xiao Y., Wang J., Lu X., Stochastic disease dynamics of a hospital infection model. Math. Biosci. 2013, 241 :115-124
40. Zhao T., Xiao Y., Smith? R.J., Non-smooth disease models with economic thresholds,Math. Biosci. 2013, 241: 34–48.
41. Yang Y., Xiao Y., Wu J., Pulse HIV Vaccination: Feasibility for Virus Eradication and Optimal Vaccination Schedule, Bull. Math. Biol. 2013, 75(5): 725-51.
42. Wang Ai, Xiao Y., Sliding bifurcation and global dynamics of a Filippov epidemic model with vaccination, Inter, J. Bifurcation Chaos, 2013, 23(8) 8: 1350144.
43. Sun X., Xiao Y., Peng Z., Wang N., Modelling HIV/AIDS Epidemic among Men Who Have Sex with Men in China, BioMed Research International, 2013, Article ID 413260.
44. Wang Ai., Xiao Y., A Filippov system describing media effects on the spread of infectious diseases, Nonl.Anal. Hybrid Systems, 2014, 11:84-97.
45. Xu X., Xiao Y.*, Cheke R., Models of impulsive culling of mosquitoes to interrupt transmission of West Nile Virus to birds, Applied Mathematical Modelling 2015, 39: 3549-3568. doi:10.1016/j.apm.2014.10.072
46. Xiao Y., Tang S., Wu J., Media impact switching surface during an infectious disease outbreak, Scientific Reports (Sci. Rep. ) 5, 7838; DOI:10.1038/srep07838 (2015).
47. Shen M., Xiao Y., Rong L., Global stability of an infection-age structured HIV-1 model linking within-host and between-host dynamics, Math Biosci, 263(2015): 37-50.
48 Shen M., Xiao Y., Rong L., Modeling the effect of comprehensive interventions on Ebola virus transmission. Sci. Rep. 5, 15818; doi: 10.1038/srep15818 (2015).
49. Sun X., Xiao Y., Peng Z., Modelling HIV superinfection among men who have sex with men, Math Biol Eng, 2016, 13(1): 171-191. doi:10.3934/mbe.2016.13.171