Optimal Control Strategies for the Infectiology of Brucellosis
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Livingstone S. Luboobi | Nkuba Nyerere | Saul C. Mpeshe | Gabriel M. Shirima | S. C. Mpeshe | L. Luboobi | N. Nyerere | G. Shirima
[1] Georgios Pappas,et al. The new global map of human brucellosis. , 2006, The Lancet. Infectious diseases.
[2] Kazeem O. Okosun,et al. Optimal control strategies and cost-effectiveness analysis of a malaria model , 2013, Biosyst..
[3] Xiumin Ma,et al. Multiple-locus variable-number tandem-repeat analysis of Brucella isolates from patients in Xinjiang China. , 2015, International journal of clinical and experimental medicine.
[4] R. Krecek,et al. Brucellosis remains a neglected disease in the developing world: a call for interdisciplinary action , 2018, BMC Public Health.
[5] O. Diekmann,et al. On the definition and the computation of the basic reproduction ratio R0 in models for infectious diseases in heterogeneous populations , 1990, Journal of mathematical biology.
[6] G. Shirima. The epidemiology of brucellosis in animals and humans in Arusha and Manyara regions in Tanzania , 2005 .
[7] Bedr ' Eddine. A model for ovine brucellosis incorporating direct and indirect transmission , 2009 .
[8] J. Crump,et al. Incidence of human brucellosis in the Kilimanjaro Region of Tanzania in the periods 2007–2008 and 2012–2014 , 2018, Transactions of the Royal Society of Tropical Medicine and Hygiene.
[9] S. Mushayabasa,et al. On the dynamics of brucellosis infection in bison population with vertical transmission and culling. , 2018, Mathematical biosciences.
[10] L. Schoonman,et al. Human Brucellosis: Seroprevalence and Risk Factors Related to High Risk Occupational Groups in Tanga Municipality, Tanzania , 2009, Zoonoses and public health.
[11] Dahlard L. Lukes,et al. Differential Equations: Classical to Controlled , 2012 .
[12] M. Postma,et al. Four quadrants of the cost-effectiveness plane: some considerations on the south-west quadrant , 2004, Expert review of pharmacoeconomics & outcomes research.
[13] P Vounatsou,et al. A model of animal-human brucellosis transmission in Mongolia. , 2005, Preventive veterinary medicine.
[14] I. Moriyón,et al. Brucellosis in Sub-Saharan Africa: Current challenges for management, diagnosis and control. , 2017, Acta tropica.
[15] I. Habib,et al. Risk Factors Associated with Brucella Seropositivity in Sheep and Goats in Duhok Province, Iraq , 2017, Veterinary sciences.
[16] S. C. Mpeshe,et al. Mathematical model for brucellosis transmission dynamics in livestock and human populations , 2020 .
[17] John T. Workman,et al. Optimal Control Applied to Biological Models , 2007 .
[18] L. Luboobi,et al. An optimal control problem for ovine brucellosis with culling , 2015, Journal of biological dynamics.
[19] E. Matovu,et al. Human brucellosis: sero-prevalence and associated risk factors in agro-pastoral communities of Kiboga District, Central Uganda , 2015, BMC Public Health.
[20] P. McFarlane,et al. Acceptance and rejection: cost-effectiveness and the working nephrologist. , 2004, Kidney international.
[21] A. El-Sayed,et al. Brucellosis: Evolution and expected comeback , 2018, International journal of veterinary science and medicine.
[22] E. Swai,et al. A survey of zoonotic diseases in trade cattle slaughtered at Tanga city abattoir: a cause of public health concern. , 2012, Asian Pacific journal of tropical biomedicine.
[23] S. Cleaveland,et al. Quantifying Risk Factors for Human Brucellosis in Rural Northern Tanzania , 2010, PloS one.
[24] Zhen Jin,et al. Prediction and Control of Brucellosis Transmission of Dairy Cattle in Zhejiang Province, China , 2014, PloS one.
[25] G. Carrin,et al. Human health benefits from livestock vaccination for brucellosis: case study. , 2003, Bulletin of the World Health Organization.
[26] F. Tuon,et al. Human‐to‐human transmission of Brucella – a systematic review , 2017, Tropical medicine & international health : TM & IH.
[27] O Diekmann,et al. The construction of next-generation matrices for compartmental epidemic models , 2010, Journal of The Royal Society Interface.
[28] Y. Sidi,et al. Sexually transmitted brucellosis in humans. , 2010, Clinical infectious diseases : an official publication of the Infectious Diseases Society of America.
[29] Pierre Magal,et al. A model for ovine brucellosis incorporating direct and indirect transmission , 2010, Journal of biological dynamics.
[30] Juan Zhang,et al. Transmission dynamics of a multi-group brucellosis model with mixed cross infection in public farm , 2014, Appl. Math. Comput..
[31] E. Schelling,et al. Global Burden of Human Brucellosis: A Systematic Review of Disease Frequency , 2012, PLoS neglected tropical diseases.
[32] S. C. Mpeshe,et al. Mathematical model for the infectiology of brucellosis with some control strategies , 2019, New Trends in Mathematical Science.
[33] K. Riesenberg,et al. The many faces of human-to-human transmission of brucellosis: congenital infection and outbreak of nosocomial disease related to an unrecognized clinical case. , 2007, Clinical infectious diseases : an official publication of the Infectious Diseases Society of America.
[34] A. Palanduz,et al. Brucellosis in a mother and her young infant: probable transmission by breast milk. , 2000, International journal of infectious diseases : IJID : official publication of the International Society for Infectious Diseases.
[35] S. Cleaveland,et al. Integrating serological and genetic data to quantify cross-species transmission: brucellosis as a case study , 2016, Parasitology.
[36] M. Bronze,et al. Bacterial Pathogens as Biological Weapons and Agents of Bioterrorism , 2002, The American journal of the medical sciences.
[37] Zhen Jin,et al. Modeling the transmission dynamics of sheep brucellosis in Inner Mongolia Autonomous Region, China. , 2013, Mathematical biosciences.
[38] M. Tanner,et al. Brucellosis and Q-fever seroprevalences of nomadic pastoralists and their livestock in Chad. , 2003, Preventive veterinary medicine.
[39] A. Korobeinikov,et al. Dynamics of Tuberculosis: The effect of Direct Observation Therapy Strategy (DOTS) in Nigeria , 2007 .
[40] J. Shepherd,et al. Peginterferon alfa and ribavirin for chronic hepatitis C in patients eligible for shortened treatment, re-treatment or in HCV/HIV co-infection: a systematic review and economic evaluation. , 2011, Health technology assessment.
[41] R. L. Santos,et al. Pathogenesis of Brucella spp. , 2010 .
[42] Can Li,et al. Transmission dynamics of a brucellosis model: Basic reproduction number and global analysis , 2017 .
[43] R. L. Santos,et al. Pathogenesis and pathobiology of brucellosis in livestock. , 2013, Revue scientifique et technique.
[44] G. Mamo,et al. Review on Brucellosis Sero-prevalence and Ecology in Livestock and Human Population of Ethiopia , 2016 .
[45] M. Corbel,et al. Brucellosis in humans and animals. , 2006 .