Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit multiple foraging sites in a manner that minimizes overall travel distance. Despite being taxonomically widespread, these routing behaviours remain poorly understood due to the difficulty of tracking the foraging history of animals in the wild. Here we examine how bumblebees (Bombus terrestris) develop and optimise traplines over large spatial scales by setting up an array of five artificial flowers arranged in a regular pentagon (50 m side length) and fitted with motion-sensitive video cameras to determine the sequence of visitation. Stable traplines that linked together all the flowers in an optimal sequence were typically established after a...
PublishedJournal ArticleResearch Support, Non-U.S. Gov'tCentral place foragers, such as pollinating ...
Animals collecting resources that replenish over time often visit patches in predictable sequences c...
Animals collecting resources that replenish over time often visit patches in predictable sequences c...
Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit mu...
Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit mu...
Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit mu...
Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit mu...
Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit mu...
Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit mu...
Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit mu...
Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit mu...
<div><p>Central place foragers, such as pollinating bees, typically develop circuits (traplines) to ...
International audienceCentral place foragers, such as pollinating bees, typically develop circuits (...
Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit mu...
Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit mu...
PublishedJournal ArticleResearch Support, Non-U.S. Gov'tCentral place foragers, such as pollinating ...
Animals collecting resources that replenish over time often visit patches in predictable sequences c...
Animals collecting resources that replenish over time often visit patches in predictable sequences c...
Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit mu...
Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit mu...
Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit mu...
Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit mu...
Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit mu...
Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit mu...
Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit mu...
Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit mu...
<div><p>Central place foragers, such as pollinating bees, typically develop circuits (traplines) to ...
International audienceCentral place foragers, such as pollinating bees, typically develop circuits (...
Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit mu...
Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit mu...
PublishedJournal ArticleResearch Support, Non-U.S. Gov'tCentral place foragers, such as pollinating ...
Animals collecting resources that replenish over time often visit patches in predictable sequences c...
Animals collecting resources that replenish over time often visit patches in predictable sequences c...