This paper presents a diffusion model of larval dispersal especifically designed to account for particular aspects of postfeeding larval dispersal from the food source in organisms such as blowflies. In these organisms the dispersal of immatures includes two groups of individuals, those that are actively migrating and those that have initiated the pupation process. The classical diffusion equation in one dimension was modified to incorporate a function which describes the burying of larvae to become pupae. The analytical solution of this equation predicts oscillatory and monotonic dispersal behaviors, which are observed in experimental populations of blowfly species.92228128
A Lagrangian stochastic larva tracking model based on a 3-dimensional (3D) high resolution wind-driv...
Analysis of the movement patterns of animals using diffusion processes helps to understand and predi...
Blowflies utilize discrete and ephemeral sites for breeding and larval nutrition. After the exhausti...
This paper presents a diffusion model of larval dispersal especifically designed to account for part...
This paper presents a diffusion model of larval dispersal especifically designed to account for part...
This paper presents a diffusion model of larval dispersal especifically designed to account for part...
A simple mathematical model is developed to explain the appearance of oscillations in the dispersal ...
A simple mathematical model is developed to explain the appearance of oscillations in the dispersal ...
Immature and adult stages of blowflies are one of the primary invertebrate consumers of decomposing ...
We performed a computational analysis employing a cellular automata model to investigate the larval ...
An overall theoretical approach to model phenomena of interest for forensic entomology is advanced. ...
Abstract in English and French.Density dependence in colonization is poorly understood. We studied c...
Blowflies utilize discrete and ephemeral sites for breeding and larval nutrition. After the exhausti...
Synopsis Larvae have been difficult to study because their small size limits our ability to understa...
Larval dispersal is arguably the most important but least understood demographic process in the sea....
A Lagrangian stochastic larva tracking model based on a 3-dimensional (3D) high resolution wind-driv...
Analysis of the movement patterns of animals using diffusion processes helps to understand and predi...
Blowflies utilize discrete and ephemeral sites for breeding and larval nutrition. After the exhausti...
This paper presents a diffusion model of larval dispersal especifically designed to account for part...
This paper presents a diffusion model of larval dispersal especifically designed to account for part...
This paper presents a diffusion model of larval dispersal especifically designed to account for part...
A simple mathematical model is developed to explain the appearance of oscillations in the dispersal ...
A simple mathematical model is developed to explain the appearance of oscillations in the dispersal ...
Immature and adult stages of blowflies are one of the primary invertebrate consumers of decomposing ...
We performed a computational analysis employing a cellular automata model to investigate the larval ...
An overall theoretical approach to model phenomena of interest for forensic entomology is advanced. ...
Abstract in English and French.Density dependence in colonization is poorly understood. We studied c...
Blowflies utilize discrete and ephemeral sites for breeding and larval nutrition. After the exhausti...
Synopsis Larvae have been difficult to study because their small size limits our ability to understa...
Larval dispersal is arguably the most important but least understood demographic process in the sea....
A Lagrangian stochastic larva tracking model based on a 3-dimensional (3D) high resolution wind-driv...
Analysis of the movement patterns of animals using diffusion processes helps to understand and predi...
Blowflies utilize discrete and ephemeral sites for breeding and larval nutrition. After the exhausti...