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Updated: Jun 29, 2025

Modeling The Lifecycle Of Ebola Virus Under Biosafety Level 2 Conditions With Virus-like Particles Containing Tetracistronic Minigenomes
Published on: September 27, 2014
A computational model of epidemic process with three variants on a synthesized human interaction network
Seprianus1, Nuning Nuraini2, Suhadi Wido Saputro2
1Department of Mathematics, Institut Teknologi Bandung, Bandung, Indonesia. 30119003@mahasiswa.itb.ac.id.
Abstract:
Virus mutations give rise to new variants that cause multiple waves of pandemics and escalate the infected number of individuals. In this paper, we develop both a simple random network that we define as a synthesized human interaction network and an epidemiological model based on the microscopic process of disease spreading to describe the epidemic process with three variants in a population with some features of social structure. The features of social structure we take into account in the model are the average number of degrees and the frequency of contacts. This paper shows many computational results from several scenarios both in varying network structures and epidemiological parameters that cannot be obtained numerically by using the compartmental model.
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