Epidemiologists use individual‐based models to (a) simulate disease spread over dynamic contact networks and (b) to investigate strategies to control the outbreak. These model simulations generate complex ‘infection maps’ of time‐varying transmission trees and patterns of spread. Conventional statistical analysis of outputs offers only limited interpretation. This paper presents a novel visual analytics approach for the inspection of infection maps along with their associated metadata, developed collaboratively over 16 months in an evolving emergency response situation. We introduce the concept of representative trees that summarize the many components of a time‐varying infection map while preserving the epidemiological characteristics of e...
We report on an ongoing collaboration between epidemiological modellers and visualization researcher...
The risk of infectious disease increases due to various factors including the dense population, deve...
Abstract Background Recent epidemics have entailed global discussions on revamping epidemic control ...
Epidemiologists use individual-based models to (a) simulate disease spread over dynamic contact netw...
Epidemiologists use individual-based models to (a) simulate disease spread over dynamic contact netw...
We report on an ongoing collaboration between epidemiological modellers and visualization researcher...
Both COVID-19 and novel pandemics challenge those of us within the modeling community, specifically ...
The rapid diffusion of a contagion amongst a population has detrimental impacts on both public healt...
Clinicians and hygienists need to know how an infection of one patient could be transmitted among ot...
Something many pathogens have in common is the requirement for tracing their spread under harsh ti...
The development of the visualization tool of any infectious spreading disease requires an elegant gr...
We will first provide a brief introduction to models of disease transmission on so-called contact ne...
In this report we described our visual analytics study of the pandemic spread data from the Mini Cha...
Abstract. The development of the visualization tool of any infectious spread-ing disease requires an...
We report on an ongoing collaboration between epidemiological modellers and visualization researcher...
The risk of infectious disease increases due to various factors including the dense population, deve...
Abstract Background Recent epidemics have entailed global discussions on revamping epidemic control ...
Epidemiologists use individual-based models to (a) simulate disease spread over dynamic contact netw...
Epidemiologists use individual-based models to (a) simulate disease spread over dynamic contact netw...
We report on an ongoing collaboration between epidemiological modellers and visualization researcher...
Both COVID-19 and novel pandemics challenge those of us within the modeling community, specifically ...
The rapid diffusion of a contagion amongst a population has detrimental impacts on both public healt...
Clinicians and hygienists need to know how an infection of one patient could be transmitted among ot...
Something many pathogens have in common is the requirement for tracing their spread under harsh ti...
The development of the visualization tool of any infectious spreading disease requires an elegant gr...
We will first provide a brief introduction to models of disease transmission on so-called contact ne...
In this report we described our visual analytics study of the pandemic spread data from the Mini Cha...
Abstract. The development of the visualization tool of any infectious spread-ing disease requires an...
We report on an ongoing collaboration between epidemiological modellers and visualization researcher...
The risk of infectious disease increases due to various factors including the dense population, deve...
Abstract Background Recent epidemics have entailed global discussions on revamping epidemic control ...