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Dynamical transmission model of MERS-CoV in two areas

Identifieur interne : 000B92 ( Pmc/Checkpoint ); précédent : 000B91; suivant : 000B93

Dynamical transmission model of MERS-CoV in two areas

Auteurs : Benny Yong ; Livia Owen

Source :

RBID : PMC:7108780

Abstract

Middle East Respiratory Syndrome Coronavirus (MERS-CoV) is a disease first reported in Saudi Arabia in 2012 and it can be transmitted from human to human. This disease has spread to several other countries, most confirmed cases have displayed symptoms of severe acute respiratory illness and many of these patients have died. This research is aimed to construct a mathematical model for the transmission of MERS-CoV in two areas by separating the human population into two groups; susceptible and infectious groups. The dynamics of the disease is studied by a compartmental model involving ordinary differrential equations. The basic reproductive number of this disease is discussed to control the outbreak of this disease. Sensitivity analysis of this model is performed to determine the relative importance of the model parameters to the MERS-CoV transmission.


Url:
DOI: 10.1063/1.4942993
PubMed: 32255875
PubMed Central: 7108780


Affiliations:


Links toward previous steps (curation, corpus...)


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PMC:7108780

Le document en format XML

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Department of Mathematics, Faculty of Information Technology and Science,
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, Jalan Ciumbuleuit 94 Bandung 40141, West Java,
<country>INDONESIA</country>
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<institution>Institut Teknologi Bandung</institution>
, Bandung,
<country>Indonesia</country>
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<name>
<surname>Kania</surname>
<given-names>Adhe</given-names>
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<institution>Institut Teknologi Bandung</institution>
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<p>Middle East Respiratory Syndrome Coronavirus (MERS-CoV) is a disease first reported in Saudi Arabia in 2012 and it can be transmitted from human to human. This disease has spread to several other countries, most confirmed cases have displayed symptoms of severe acute respiratory illness and many of these patients have died. This research is aimed to construct a mathematical model for the transmission of MERS-CoV in two areas by separating the human population into two groups; susceptible and infectious groups. The dynamics of the disease is studied by a compartmental model involving ordinary differrential equations. The basic reproductive number of this disease is discussed to control the outbreak of this disease. Sensitivity analysis of this model is performed to determine the relative importance of the model parameters to the MERS-CoV transmission.</p>
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