Lyme disease is the most prevalent vector-borne disease in the temperate Northern Hemisphere. The abundance of infected nymphal ticks is commonly used as a Lyme disease risk indicator. Temperature can influence the dynamics of disease by shaping the activity and development of ticks and, hence, altering the contact pattern and pathogen transmission between ticks and their host animals. A mechanistic, agent-based model was developed to study the temperature-driven seasonality of Ixodes ricinus ticks and transmission of Borrelia burgdorferi sensu lato across mainland Scotland. Based on 12-year averaged temperature surfaces, our model predicted that Lyme disease risk currently peaks in autumn, approximately six weeks after the temperature peak...
Seasonal variation in temperature is known to drive annual patterns of tick activity and can influen...
A population model for the tick Ixodes ricinus, the most significant vector of pathogens in Europe, ...
1. A population model for the tick Ixodes ricinus, the most significant vector of pathogens in Europ...
Lyme disease is the most prevalent vector-borne disease in the temperate Northern Hemisphere. The ab...
Lyme disease is the most prevalent vector-borne disease in the temperate Northern Hemisphere. The ab...
Lyme disease is the most prevalent vector-borne disease in the temperate Northern Hemisphere. The ab...
Warmer temperatures are expected to increase the incidence of Lyme disease through enhanced tick mat...
available at the end of the article Lyme disease imposes increasing global public health challenges....
Lyme disease imposes increasing global public health challenges. To better understand the joint effe...
Lyme disease (Lyme borreliosis) is a tick-borne illness spread through the bite of a blacklegged tic...
The impact of climate change on vector-borne infectious diseases is currently controversial. In Euro...
The impact of climate change on vector-borne infectious diseases is currently controversial. In Euro...
The primary tick vector of major pathogens in the Eastern United States, Ixodes scapularis, maintain...
The primary tick vector of major pathogens in the Eastern United States, Ixodes scapularis, maintain...
Ixodes ricinus ticks (Acari: Ixodidae) are the most important vector for Lyme borreliosis in Europe....
Seasonal variation in temperature is known to drive annual patterns of tick activity and can influen...
A population model for the tick Ixodes ricinus, the most significant vector of pathogens in Europe, ...
1. A population model for the tick Ixodes ricinus, the most significant vector of pathogens in Europ...
Lyme disease is the most prevalent vector-borne disease in the temperate Northern Hemisphere. The ab...
Lyme disease is the most prevalent vector-borne disease in the temperate Northern Hemisphere. The ab...
Lyme disease is the most prevalent vector-borne disease in the temperate Northern Hemisphere. The ab...
Warmer temperatures are expected to increase the incidence of Lyme disease through enhanced tick mat...
available at the end of the article Lyme disease imposes increasing global public health challenges....
Lyme disease imposes increasing global public health challenges. To better understand the joint effe...
Lyme disease (Lyme borreliosis) is a tick-borne illness spread through the bite of a blacklegged tic...
The impact of climate change on vector-borne infectious diseases is currently controversial. In Euro...
The impact of climate change on vector-borne infectious diseases is currently controversial. In Euro...
The primary tick vector of major pathogens in the Eastern United States, Ixodes scapularis, maintain...
The primary tick vector of major pathogens in the Eastern United States, Ixodes scapularis, maintain...
Ixodes ricinus ticks (Acari: Ixodidae) are the most important vector for Lyme borreliosis in Europe....
Seasonal variation in temperature is known to drive annual patterns of tick activity and can influen...
A population model for the tick Ixodes ricinus, the most significant vector of pathogens in Europe, ...
1. A population model for the tick Ixodes ricinus, the most significant vector of pathogens in Europ...