Understanding where and how fast an infectious disease will spread during an epidemic is critical for its control. However, the task is a challenging one as numerous factors may interact and drive the spread of a disease, specifically when vector-borne diseases are involved. We advocate the use of simultaneous autoregressive models to identify environmental features that significantly impact the velocity of disease spread. We illustrate this approach by exploring several environmental factors influencing the velocity of bluetongue (BT) spread in France during the 2007-2008 epizootic wave to determine which ones were the most important drivers. We used velocities of BT spread estimated in 4,495 municipalities and tested sixteen covariates de...
<div><p>Vaccination is one of the most efficient ways to control the spread of infectious diseases. ...
When Bluetongue Virus Serotype 8 (BTV-8) was first detected in Northern Europe in 2006, several guid...
The introduction of bluetongue virus serotype 8 into northern Europe at the end of summer 2006 initi...
International audienceUnderstanding where and how fast an infectious disease will spread during an e...
<div><p>Understanding where and how fast an infectious disease will spread during an epidemic is cri...
In 2006-2009 northwest Europe experienced a major Bluetongue outbreak, an infectious disease of rumi...
Spatio-temporal patterns of the spread of infectious diseases are commonly driven by environmental a...
Spatio-temporal patterns of the spread of infectious diseases are commonly driven by environmental a...
Spatio-temporal patterns of the spread of infectious diseases are commonly driven by environmental a...
Spatio-temporal patterns of the spread of infectious diseases are commonly driven by environmental a...
Spatio-temporal patterns of the spread of infectious diseases are commonly driven by environmental a...
Spatio-temporal patterns of the spread of infectious diseases are commonly driven by environmental a...
Several epidemics caused by different bluetongue virus (BTV) serotypes occurred in European ruminant...
In 2006, Bluetongue serotype 8 was notified for the first time in north-western Europe, more specifi...
International audienceVaccination is one of the most efficient ways to control the spread of infecti...
<div><p>Vaccination is one of the most efficient ways to control the spread of infectious diseases. ...
When Bluetongue Virus Serotype 8 (BTV-8) was first detected in Northern Europe in 2006, several guid...
The introduction of bluetongue virus serotype 8 into northern Europe at the end of summer 2006 initi...
International audienceUnderstanding where and how fast an infectious disease will spread during an e...
<div><p>Understanding where and how fast an infectious disease will spread during an epidemic is cri...
In 2006-2009 northwest Europe experienced a major Bluetongue outbreak, an infectious disease of rumi...
Spatio-temporal patterns of the spread of infectious diseases are commonly driven by environmental a...
Spatio-temporal patterns of the spread of infectious diseases are commonly driven by environmental a...
Spatio-temporal patterns of the spread of infectious diseases are commonly driven by environmental a...
Spatio-temporal patterns of the spread of infectious diseases are commonly driven by environmental a...
Spatio-temporal patterns of the spread of infectious diseases are commonly driven by environmental a...
Spatio-temporal patterns of the spread of infectious diseases are commonly driven by environmental a...
Several epidemics caused by different bluetongue virus (BTV) serotypes occurred in European ruminant...
In 2006, Bluetongue serotype 8 was notified for the first time in north-western Europe, more specifi...
International audienceVaccination is one of the most efficient ways to control the spread of infecti...
<div><p>Vaccination is one of the most efficient ways to control the spread of infectious diseases. ...
When Bluetongue Virus Serotype 8 (BTV-8) was first detected in Northern Europe in 2006, several guid...
The introduction of bluetongue virus serotype 8 into northern Europe at the end of summer 2006 initi...