A) the probability distribution of infectious humans, the mosquitoes they infect and the subsequent human dengue cases. The red dotted line shows a typical reactive delay. Day 0 is the day of first symptoms due to dengue. B) Probability of interrupting transmission over different delay durations. Black dotted lines show the time when there is a 50% chance of interrupting transmission.</p
<p>Components of the delay in at-risk country following initiation. (A) Results of 10,000 simulation...
<p>The x-axis represents time in days since first detection of a virus. The y-axis depicts the proba...
Dengue virus is transmitted from person to person through the biting of infected Aedes Aegypti mosqu...
<p>For each sequential step in the mosquito (A) and human (B) introduction processes, we calculated ...
Background: Vector-borne disease transmission is dependent on the many nuances of the contact event ...
<p>(A,D,G,J): DENV viremia since time of infection for different infection classes and pre-exposure ...
In this paper, we establish a mathematical model with two delays to reflect the intrinsic and extrin...
Left–The probabilities of at least one infected mosquito given at least one exposed mosquito followi...
<p>Filled symbols indicate times to interruption. Bars illustrate the proportion of simulations in w...
The effect of a time delay on the transmission on dengue fever is studied. The time delay is due to ...
<p>In the model, a parameter determined the probability that a mosquito's movement would take it to ...
<p>The parameters summarized are the daily probability that an individual mosquito moves to a new lo...
The interval between successive cases of an infectious disease is determined by the time from infect...
<p>Parameters for dengue transmissibility and the mosquito population size were varied with respect ...
A Continuous-Time Markov Chain model is constructed based on the a deterministic model of dengue fev...
<p>Components of the delay in at-risk country following initiation. (A) Results of 10,000 simulation...
<p>The x-axis represents time in days since first detection of a virus. The y-axis depicts the proba...
Dengue virus is transmitted from person to person through the biting of infected Aedes Aegypti mosqu...
<p>For each sequential step in the mosquito (A) and human (B) introduction processes, we calculated ...
Background: Vector-borne disease transmission is dependent on the many nuances of the contact event ...
<p>(A,D,G,J): DENV viremia since time of infection for different infection classes and pre-exposure ...
In this paper, we establish a mathematical model with two delays to reflect the intrinsic and extrin...
Left–The probabilities of at least one infected mosquito given at least one exposed mosquito followi...
<p>Filled symbols indicate times to interruption. Bars illustrate the proportion of simulations in w...
The effect of a time delay on the transmission on dengue fever is studied. The time delay is due to ...
<p>In the model, a parameter determined the probability that a mosquito's movement would take it to ...
<p>The parameters summarized are the daily probability that an individual mosquito moves to a new lo...
The interval between successive cases of an infectious disease is determined by the time from infect...
<p>Parameters for dengue transmissibility and the mosquito population size were varied with respect ...
A Continuous-Time Markov Chain model is constructed based on the a deterministic model of dengue fev...
<p>Components of the delay in at-risk country following initiation. (A) Results of 10,000 simulation...
<p>The x-axis represents time in days since first detection of a virus. The y-axis depicts the proba...
Dengue virus is transmitted from person to person through the biting of infected Aedes Aegypti mosqu...