Endotherms such as rats and mice huddle together to keep warm. The huddle is considered to be an example of a self-organising system, because complex properties of the collective group behaviour are thought to emerge spontaneously through simple interactions between individuals. Groups of rodent pups display two such emergent properties. First, huddling undergoes a ‘phase transition’, such that pups start to aggregate rapidly as the temperature of the environment falls below a critical temperature. Second, the huddle maintains a constant ‘pup flow’, where cooler pups at the periphery continually displace warmer pups at the centre. We set out to test whether these complex group behaviours can emerge spontaneously from local interactions betw...
<p>(A) Phase transition. Aggregation patterns in juvenile mouse litters were measured in experiments...
Background: Within their litter, young altricial mammals compete for energy (constraining growth and...
<p>The homeothermotaxic model was simulated for a range of rates of thermogenesis <i>G</i>. Plots of...
<div><p>Endotherms such as rats and mice huddle together to keep warm. The huddle is considered to b...
A thermodynamic model of thermoregulatory huddling interactions between endotherms is developed. The...
<p>A thermodynamic description of rodent huddling behaviours in terms of a Monte Carlo algorithm was...
Thermoregulatory huddling behaviours dominate the early experiences of developing rodents, and const...
<p>(A) The phase transition returns in the collective huddling behaviour (1 − <i>η</i>) of the full ...
<p>An agent-based model of rodent thermoregulatory huddling was simulated through a range of ambient...
Huddling behaviour in neonatal rodents reduces the metabolic costs of physiological thermoregulation...
Self-organization and natural selection are fundamental forces that shape the natural world. Substan...
<p>By approximating the huddle as a single super-organism, we are able to derive the following predi...
<p>Panels <b>A</b>–<b>D</b> show complementary data to corresponding panels in <a href="http://www.p...
Huddling is a grouping behavior where animals maintain close bodily contact and save energy. We test...
Self-organisation and natural selection are fundamental in shaping the natural world. Substantial pr...
<p>(A) Phase transition. Aggregation patterns in juvenile mouse litters were measured in experiments...
Background: Within their litter, young altricial mammals compete for energy (constraining growth and...
<p>The homeothermotaxic model was simulated for a range of rates of thermogenesis <i>G</i>. Plots of...
<div><p>Endotherms such as rats and mice huddle together to keep warm. The huddle is considered to b...
A thermodynamic model of thermoregulatory huddling interactions between endotherms is developed. The...
<p>A thermodynamic description of rodent huddling behaviours in terms of a Monte Carlo algorithm was...
Thermoregulatory huddling behaviours dominate the early experiences of developing rodents, and const...
<p>(A) The phase transition returns in the collective huddling behaviour (1 − <i>η</i>) of the full ...
<p>An agent-based model of rodent thermoregulatory huddling was simulated through a range of ambient...
Huddling behaviour in neonatal rodents reduces the metabolic costs of physiological thermoregulation...
Self-organization and natural selection are fundamental forces that shape the natural world. Substan...
<p>By approximating the huddle as a single super-organism, we are able to derive the following predi...
<p>Panels <b>A</b>–<b>D</b> show complementary data to corresponding panels in <a href="http://www.p...
Huddling is a grouping behavior where animals maintain close bodily contact and save energy. We test...
Self-organisation and natural selection are fundamental in shaping the natural world. Substantial pr...
<p>(A) Phase transition. Aggregation patterns in juvenile mouse litters were measured in experiments...
Background: Within their litter, young altricial mammals compete for energy (constraining growth and...
<p>The homeothermotaxic model was simulated for a range of rates of thermogenesis <i>G</i>. Plots of...