From bird flocks to fish schools and ungulate herds to insect swarms, social biological aggregations are found across the natural world. An ongoing challenge in the mathematical modeling of aggregations is to strengthen the connection between models and biological data by quantifying the rules that individuals follow. We model aggregation of the pea aphid, Acyrthosiphon pisum. Specifically, we conduct experiments to track the motion of aphids walking in a featureless circular arena in order to deduce individual-level rules. We observe that each aphid transitions stochastically between a moving and a stationary state. Moving aphids follow a correlated random walk. The probabilities of motion state transitions, as well as the random walk para...
<p>(A) <i>P<sub>MS</sub></i>, the probability that an aphid moving in a given timestep becomes stati...
Insects provide good model systems to investigate neuronal mechanism underlying adaptive behavior (F...
The macroscopic emergent behavior of social animal groups is a classic example of dynamical self-org...
From bird flocks to fish schools and ungulate herds to insect swarms, social biological aggregations...
Nilsen et al. 2013 presents experimental data of pea aphid movement and proposes two models to simul...
The presence of several clonal lineages within a single aphid colony raises the possibility for conf...
<p>Each data point represents the mean step length within a bin of 800 elements from our experimenta...
Power laws are increasingly used to describe animal movement. Despite this, the use of power laws ha...
Inference of interaction rules of animals moving in groups usually relies on an analysis of large sc...
1. Pea aphids (Acyrthosiphon pisum Harris; Hemiptera: Aphididae) exhibit transgenerational wing poly...
Collective animal behaviour occurs at nearly every biological size scale, from single-celled organis...
1. Pea aphids (Acyrthosiphon pisum Harris; Hemiptera: Aphididae) exhibit transgenerational wing poly...
Virtually all higher organisms form holobionts with associated microbiota. To understand the biology...
126 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2002.Movement of apterous adults a...
The dispersal behaviour of apterous pea aphids, Acyrthosipon pi sum (Harris) was studied in the labo...
<p>(A) <i>P<sub>MS</sub></i>, the probability that an aphid moving in a given timestep becomes stati...
Insects provide good model systems to investigate neuronal mechanism underlying adaptive behavior (F...
The macroscopic emergent behavior of social animal groups is a classic example of dynamical self-org...
From bird flocks to fish schools and ungulate herds to insect swarms, social biological aggregations...
Nilsen et al. 2013 presents experimental data of pea aphid movement and proposes two models to simul...
The presence of several clonal lineages within a single aphid colony raises the possibility for conf...
<p>Each data point represents the mean step length within a bin of 800 elements from our experimenta...
Power laws are increasingly used to describe animal movement. Despite this, the use of power laws ha...
Inference of interaction rules of animals moving in groups usually relies on an analysis of large sc...
1. Pea aphids (Acyrthosiphon pisum Harris; Hemiptera: Aphididae) exhibit transgenerational wing poly...
Collective animal behaviour occurs at nearly every biological size scale, from single-celled organis...
1. Pea aphids (Acyrthosiphon pisum Harris; Hemiptera: Aphididae) exhibit transgenerational wing poly...
Virtually all higher organisms form holobionts with associated microbiota. To understand the biology...
126 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2002.Movement of apterous adults a...
The dispersal behaviour of apterous pea aphids, Acyrthosipon pi sum (Harris) was studied in the labo...
<p>(A) <i>P<sub>MS</sub></i>, the probability that an aphid moving in a given timestep becomes stati...
Insects provide good model systems to investigate neuronal mechanism underlying adaptive behavior (F...
The macroscopic emergent behavior of social animal groups is a classic example of dynamical self-org...