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Interplay between reaction and diffusion processes in governing the dynamics of virus infections multiplication in the host cells, their transport and on the immune response. Reaction-diffusion systems

AN EPIDEMIC MODEL WITH STRAIN MUTATION, CROSS-IMMUNITY AND ANIMAL-HUMAN INTERACTION substantial influence on human populations. We develop a new mathematical model based on the combination

Thermovaccination, thermoheliox as a stimulant of immune response. Kinetic model of process development, accumulation of antibodies, and immune response in the human body. The general features of immune system

Emergence and competition of virus variants in respiratory viral infections variants. This work is devoted to the mathematical modeling of the first two stages of this process

The Interferon Influence on the Infection Wave Propagation by the innate immune response mediated mainly by immune cells and interferon. The effectiveness of this response

Genotype-dependent virus distribution and competition of virus strains for the host cells and its elimination by the immune response and by the genotype-dependent mortality

RALF peptides modulate immune response in the moss Physcomitrium patens, suggesting the role of these peptides in negative regulation of the immune response in P. patens. Comparing

A heterologous virus-vectored vaccine for prevention of middle east respiratory syndrome induces long protective immune response against MERS-cov-CoV (EMC/2012). To study duration of protective immune response, we used a model of lethal infection

Hybrid models in biomedical applications to study immune response and the development of viral infection. A two-scale model describing processes

A model of chronic inflammation in atherosclerosis plaques in artery walls, narrowing its lumen. In this work, we present a mathematical model

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