A mathematical model consisting of two systems of Hepatitis B virus (HBV) infection is set up based on the model of virus dynamics and experimental observation of anti-viral drug therapy for HBV infection patients provided by Nowak. A mathematical analysis of dynamic behaviors shows that the model has two kinds of equilibrium points, which represent the patients ’ complete recovery and HBV persistent infection at the end of the treatment with drug lamivudine, respectively. Our model may provide possible quantitative interpretations for the long-time treatments of chronic HBV infections with the drug lamivudine according to different model parameters, in particularly it may explain why the plasma virus of Nowak et al’s patients turnover the ...
ABSTRACT. Chronic HBV affects 350 million people and can lead to death through cirrhosis-induced liv...
In this thesis, a mathematical model consisting of two system is designed. One system is the model w...
Hepatitis B is a global threat as over a billion people have been infected and about 300 million peo...
The simulation of the dynamics of viral infections by mathematical equations has been applied suc...
Modeling, analysis, and control of hepatitis B virus (HBV) infection have attracted the interests of...
Mathematical models have shown to be extremely helpful in understanding the dynamics of different vi...
BACKGROUND: Mathematical models have shown to be extremely helpful in understanding the dynamics of ...
Modeling of short-term viral dynamics of hepatitis B with traditional biphasic model might be insuff...
Data from human clinical trials have shown that the hepatitis B virus (HBV) follows complex profiles...
Using a multiphase bio-mathematical model, we studied the dynamics of hepatitis B virus (HBV) infect...
This research article focuses on the formulation of a treatment model of hepatitis epidemic of type ...
BACKGROUND: Modeling of short-term viral dynamics of hepatitis B with traditional biphasic model mig...
In this model we study the dynamics and control of hepatitis B virus HBV infection which is a major ...
Using a multiphase bio-mathematical model, we studied the dynamics of hepatitis B virus (HBV) infe...
A new detailed mathematical model for dynamics of immune response to hepatitis B is proposed, which ...
ABSTRACT. Chronic HBV affects 350 million people and can lead to death through cirrhosis-induced liv...
In this thesis, a mathematical model consisting of two system is designed. One system is the model w...
Hepatitis B is a global threat as over a billion people have been infected and about 300 million peo...
The simulation of the dynamics of viral infections by mathematical equations has been applied suc...
Modeling, analysis, and control of hepatitis B virus (HBV) infection have attracted the interests of...
Mathematical models have shown to be extremely helpful in understanding the dynamics of different vi...
BACKGROUND: Mathematical models have shown to be extremely helpful in understanding the dynamics of ...
Modeling of short-term viral dynamics of hepatitis B with traditional biphasic model might be insuff...
Data from human clinical trials have shown that the hepatitis B virus (HBV) follows complex profiles...
Using a multiphase bio-mathematical model, we studied the dynamics of hepatitis B virus (HBV) infect...
This research article focuses on the formulation of a treatment model of hepatitis epidemic of type ...
BACKGROUND: Modeling of short-term viral dynamics of hepatitis B with traditional biphasic model mig...
In this model we study the dynamics and control of hepatitis B virus HBV infection which is a major ...
Using a multiphase bio-mathematical model, we studied the dynamics of hepatitis B virus (HBV) infe...
A new detailed mathematical model for dynamics of immune response to hepatitis B is proposed, which ...
ABSTRACT. Chronic HBV affects 350 million people and can lead to death through cirrhosis-induced liv...
In this thesis, a mathematical model consisting of two system is designed. One system is the model w...
Hepatitis B is a global threat as over a billion people have been infected and about 300 million peo...