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Zespół Katedry Równań Różniczkowych i Zastosowań Matematyki
Research Potential* topologiczne niezmienniki w teorii układów dynamicznych i ich zastosowania * teoria punktów stałych i periodycznych * metody matematyczne w kardiologii * miary złożoności i ich zastosowania * modele strukturalne z dyfuzją i warunkami brzegowymi Fellera * modelowanie ekspresji genu białka Hes1 * równania McKendrick-von Foerster z warunkiem odnowy * modelowanie termicznej ablacji za pomocą równania bio-przewodnictwa ciepła * soczewkowanie...
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Search results for: HOPF BIFURCATION
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Hopf bifurcation in time‐delayed gene expression model with dimers
PublicationWe study a mathematical model of gene transcription and protein synthesis with negative feedback. We consider a system of equations taking into account the formation of dimers (i.e., complex formed by two protein monomers), the way in which dimers bind to DNA and time delay in translation process. For the model consisting of three ordinary differential equations with time delay, we derive conditions for stability of the positive...
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Analysis of a gene expression model
PublicationWe study a mathematical model of gene transcription and protein synthesis with negative feedback. We consider a system of equations taking into account the number of active binding sites, the way in which dimers bind to DNA and time delay in translation process. For a simplified model that consist of three ordinary differential equations with time delay we derive conditions for stability of the positive steady state and for the...
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Mathematical analysis of a generalised p53-Mdm2 protein gene expression model
PublicationWe propose the generalisation of the p53-Mdm2 protein gene expression model introduced by Monk (2003). We investigate the stability of a unique positive steady state and formulate conditions which guarantee the occurrence of the Hopf bifurcation. We show that oscillatory behaviour can be caused not only by time lag in protein transcription process, but also can be present in the model without time delay. Moreover, we investigate...