Activity bundle (AB) simulation is a method for obtaining a specific contact network (specific to target infectious disease) from the space – time dynamics of individuals constrained both by their social activity and by the physical condition of the space. Taking advantage of AB simulation, an individual space – time activity-based model (ISTAM) is presented which integrates the infectious-disease evolution process, individual activity patterns, and stochastic infection model. ISTAM was applied to the University of Southampton in order to simulate a hypothetical influenza epidemic. The results show that the model behaviour is approximately consistent with expectations
This thesis is concerned with the description and analysis of a stochastic model for the spread of a...
In response to concerns about possible bioterrorism, the authors developed an individual-based (or "...
The mathematical modelling of infectious diseases is a large research area with a wide literature. I...
Activity bundle (AB) simulation is a method for obtaining a specific contact network (specific to ta...
Activity bundle (AB) simulation is a method for obtaining a specific contact network (specific to ta...
The 21st century has seen a boom of the application of individual-based models for the simulation of...
This paper provides an example of the application of an individual space-time activity-based model (...
This paper provides an example of the application of an individual space–time activity-basedmodel (I...
Research on the transmission of infectious diseases amongst the human population at fine scales is l...
Despite a range of epidemiological models existing, the majority of these are cohort-level instead o...
A new approach to formulating mathematical models of increasing complexity to describe the dynamics ...
The goal of this work is to develop a mathematical model to analyze the spread of COVID-19 infection...
This paper presents a conceptual framework to formalize an individual-based and spatially explicit m...
Background The transmission of infectious disease amongst the human population is a complex process...
When it comes to understanding the spread of COVID-19, recent studies have shown that pathogens can ...
This thesis is concerned with the description and analysis of a stochastic model for the spread of a...
In response to concerns about possible bioterrorism, the authors developed an individual-based (or "...
The mathematical modelling of infectious diseases is a large research area with a wide literature. I...
Activity bundle (AB) simulation is a method for obtaining a specific contact network (specific to ta...
Activity bundle (AB) simulation is a method for obtaining a specific contact network (specific to ta...
The 21st century has seen a boom of the application of individual-based models for the simulation of...
This paper provides an example of the application of an individual space-time activity-based model (...
This paper provides an example of the application of an individual space–time activity-basedmodel (I...
Research on the transmission of infectious diseases amongst the human population at fine scales is l...
Despite a range of epidemiological models existing, the majority of these are cohort-level instead o...
A new approach to formulating mathematical models of increasing complexity to describe the dynamics ...
The goal of this work is to develop a mathematical model to analyze the spread of COVID-19 infection...
This paper presents a conceptual framework to formalize an individual-based and spatially explicit m...
Background The transmission of infectious disease amongst the human population is a complex process...
When it comes to understanding the spread of COVID-19, recent studies have shown that pathogens can ...
This thesis is concerned with the description and analysis of a stochastic model for the spread of a...
In response to concerns about possible bioterrorism, the authors developed an individual-based (or "...
The mathematical modelling of infectious diseases is a large research area with a wide literature. I...