We apply tools from topological data analysis to two mathematical models inspired by biological aggregations such as bird flocks, fish schools, and insect swarms. Our data consists of numerical simulation output from the models of Vicsek and D'Orsogna. These models are dynamical systems describing the movement of agents who interact via alignment, attraction, and/or repulsion. Each simulation time frame is a point cloud in position-velocity space. We analyze the topological structure of these point clouds, interpreting the persistent homology by calculating the first few Betti numbers. These Betti numbers count connected components, topological circles, and trapped volumes present in the data. To interpret our results, we introduce a visual...
Flocking is a fascinating phenomenon observed across a wide range of living organisms. We investigat...
Shape is data and data is shape. Biologists are accustomed to thinking about how the shape of biomol...
This paper presents a model of swarm behaviour that encodes the spatial-temporal characteristics of ...
We apply tools from topological data analysis to two mathematical models inspired by biological aggr...
We apply tools from topological data analysis to two mathematical models inspired by bio-logical agg...
We use topological data analysis as a tool to analyze the fit of mathematical models to experimental...
Flocking is a fascinating phenomenon observed across a wide range of living organisms. We investigat...
Nilsen et al. 2013 presents experimental data of pea aphid movement and proposes two models to simul...
Recent advances in microscopy techniques make it possible to study the growth, dynamics, and respons...
In this work we establish a sequence of asymptotic statistical results for important quantities in T...
Models of self-propelled particles (SPPs) are an indispensable tool to investigate collective animal...
We study the collective behaviour of animal aggregations, swarming, using theoretical models of coll...
Numerical models indicate that collective animal behavior may emerge from simple local rules of inte...
2017 Summer.Includes bibliographical references.Complex data can be challenging to untangle. Recent ...
<p>A typical snapshot is shown in <a href="http://www.plosone.org/article/info:doi/10.1371/journal.p...
Flocking is a fascinating phenomenon observed across a wide range of living organisms. We investigat...
Shape is data and data is shape. Biologists are accustomed to thinking about how the shape of biomol...
This paper presents a model of swarm behaviour that encodes the spatial-temporal characteristics of ...
We apply tools from topological data analysis to two mathematical models inspired by biological aggr...
We apply tools from topological data analysis to two mathematical models inspired by bio-logical agg...
We use topological data analysis as a tool to analyze the fit of mathematical models to experimental...
Flocking is a fascinating phenomenon observed across a wide range of living organisms. We investigat...
Nilsen et al. 2013 presents experimental data of pea aphid movement and proposes two models to simul...
Recent advances in microscopy techniques make it possible to study the growth, dynamics, and respons...
In this work we establish a sequence of asymptotic statistical results for important quantities in T...
Models of self-propelled particles (SPPs) are an indispensable tool to investigate collective animal...
We study the collective behaviour of animal aggregations, swarming, using theoretical models of coll...
Numerical models indicate that collective animal behavior may emerge from simple local rules of inte...
2017 Summer.Includes bibliographical references.Complex data can be challenging to untangle. Recent ...
<p>A typical snapshot is shown in <a href="http://www.plosone.org/article/info:doi/10.1371/journal.p...
Flocking is a fascinating phenomenon observed across a wide range of living organisms. We investigat...
Shape is data and data is shape. Biologists are accustomed to thinking about how the shape of biomol...
This paper presents a model of swarm behaviour that encodes the spatial-temporal characteristics of ...