Zobrazeno 1 - 10
of 30
pro vyhledávání: '"Paride O. Lolika"'
Autor:
Mlyashimbi Helikumi, Paride O. Lolika
Publikováno v:
Mathematical Modelling and Control, Vol 3, Iss 3, Pp 192-209 (2023)
In this study, a fractional-order model for COVID-19 disease transmission is proposed and studied. First, the disease-free equilibrium and the basic reproduction number, $ {\cal R}_0 $ of the model has been communicated. The local and global stabilit
Externí odkaz:
https://doaj.org/article/ee7359aceeac42f7af49d8a033738c2c
Autor:
Paride O. Lolika, Mlyashimbi Helikumi
Publikováno v:
Mathematical Modelling and Control, Vol 3, Iss 1, Pp 23-38 (2023)
In this paper, we propose, analyze and simulate a time delay differential equation to investigate the transmission and spread of Coronavirus disease (COVID-19). The basic reproduction number of the model is determined and qualitatively used to invest
Externí odkaz:
https://doaj.org/article/499e244f33564585b16ea9df526d0927
Publikováno v:
Informatics in Medicine Unlocked, Vol 24, Iss , Pp 100570- (2021)
In this paper, we proposed and analyzed a non-autonomous sleeping sickness that incorporates host and vector movement in a periodic environment. The proposed model is a two patch framework that has three species-humans, animals and tsetse flies. In a
Externí odkaz:
https://doaj.org/article/72c5d5b597a64afea5030c6e5bb4814d
Autor:
Mohamed Y. A. Bakhet, Makur Makuac Chinor, Abdelmajid Ali Dafallah, Fadlallah Mustafa Mosa, Paride O. Lolika, Sulieman A. S. Jomah, Ahmed Eshag Mohamed
Publikováno v:
Asian Research Journal of Mathematics. :17-35
In this article, we study the asymptotic dynamics of a stochastic strongly damped plate system with homogeneous Neumann boundary conditions and multiplicative noise. First, we investigate the existence and uniqueness of solutions in infinite-dimensio
Autor:
Mlyashimbi Helikumi, Paride O. Lolika
Publikováno v:
Journal of Advances in Mathematics and Computer Science. :61-81
We proposed and studied a new fractional-order model for the transmission dynamics of brucellosis with a special focus on the sheep-to-sheep transmission. Two control strategies namely; culling and vaccination rate are incorporated in the model. We c
Autor:
Mlyashimbi Helikumi, Paride O. Lolika
Publikováno v:
Asian Research Journal of Mathematics. :1-26
Brucellosis is one of the most common zoonotic infections globally. It affects humans, domestic animals and wildlife. In this paper, we conduct an intrinsic analysis of human brucellosis dynamics in non-periodic and periodic environments. As such we
Autor:
Paride O. Lolika, Mlyashimbi Helikumi
Publikováno v:
Asian Research Journal of Mathematics. :82-110
In this study, we formulated and analyzed a fractional-order model for malaria disease transmission using Atangana-Beleanu-Caputo in sense to study the effects of heterogeneity vector biting exposure on the human population. To capture effects the he
Autor:
Paride O. Lolika, Steady Mushayabasa
Publikováno v:
Discrete Dynamics in Nature and Society, Vol 2018 (2018)
We present a mathematical model for brucellosis transmission that incorporates two discrete delays and culling of infected animals displaying signs of brucellosis infection. The first delay represents the incubation period while the second account fo
Externí odkaz:
https://doaj.org/article/665339d99b02408bb892018c6741dd68
Publikováno v:
Asian Research Journal of Mathematics. :1-13
Bovine tuberculosis and bovine brucellosis continue to cause serious economic and public health burden in low-income countries, especially in many regions of sub-Saharan Africa where the diseases are co-endemic. The economic burden of the two infecti
Autor:
Paride O. Lolika, Steady Mushayabasa
Publikováno v:
Mathematics, Vol 6, Iss 9, p 154 (2018)
Short-term animal movements play an integral role in the transmission and control of zoonotic infections such as brucellosis, in communal farming zones where animal movements are highly uncontrolled. Such movements need to be incorporated in models t
Externí odkaz:
https://doaj.org/article/e847911c040a4580bae1745781bcf38b