Cargando…
The Electronic Bee Spy: Eavesdropping on Honeybee Communication via Electrostatic Field Recordings
As a canary in a coalmine warns of dwindling breathable air, the honeybee can indicate the health of an ecosystem. Honeybees are the most important pollinators of fruit-bearing flowers, and share similar ecological niches with many other pollinators; therefore, the health of a honeybee colony can re...
Autores principales: | , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Frontiers Media S.A.
2021
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8115936/ https://www.ncbi.nlm.nih.gov/pubmed/33994968 http://dx.doi.org/10.3389/fnbeh.2021.647224 |
_version_ | 1783691290419920896 |
---|---|
author | Paffhausen, Benjamin H. Petrasch, Julian Greggers, Uwe Duer, Aron Wang, Zhengwei Menzel, Simon Stieber, Peter Haink, Karén Geldenhuys, Morgan Čavojská, Jana Stein, Timo A. Wutke, Sophia Voigt, Anja Coburn, Josephine Menzel, Randolf |
author_facet | Paffhausen, Benjamin H. Petrasch, Julian Greggers, Uwe Duer, Aron Wang, Zhengwei Menzel, Simon Stieber, Peter Haink, Karén Geldenhuys, Morgan Čavojská, Jana Stein, Timo A. Wutke, Sophia Voigt, Anja Coburn, Josephine Menzel, Randolf |
author_sort | Paffhausen, Benjamin H. |
collection | PubMed |
description | As a canary in a coalmine warns of dwindling breathable air, the honeybee can indicate the health of an ecosystem. Honeybees are the most important pollinators of fruit-bearing flowers, and share similar ecological niches with many other pollinators; therefore, the health of a honeybee colony can reflect the conditions of a whole ecosystem. The health of a colony may be mirrored in social signals that bees exchange during their sophisticated body movements such as the waggle dance. To observe these changes, we developed an automatic system that records and quantifies social signals under normal beekeeping conditions. Here, we describe the system and report representative cases of normal social behavior in honeybees. Our approach utilizes the fact that honeybee bodies are electrically charged by friction during flight and inside the colony, and thus they emanate characteristic electrostatic fields when they move their bodies. These signals, together with physical measurements inside and outside the colony (temperature, humidity, weight of the hive, and activity at the hive entrance) will allow quantification of normal and detrimental conditions of the whole colony. The information provided instructs how to setup the recording device, how to install it in a normal bee colony, and how to interpret its data. |
format | Online Article Text |
id | pubmed-8115936 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | Frontiers Media S.A. |
record_format | MEDLINE/PubMed |
spelling | pubmed-81159362021-05-13 The Electronic Bee Spy: Eavesdropping on Honeybee Communication via Electrostatic Field Recordings Paffhausen, Benjamin H. Petrasch, Julian Greggers, Uwe Duer, Aron Wang, Zhengwei Menzel, Simon Stieber, Peter Haink, Karén Geldenhuys, Morgan Čavojská, Jana Stein, Timo A. Wutke, Sophia Voigt, Anja Coburn, Josephine Menzel, Randolf Front Behav Neurosci Behavioral Neuroscience As a canary in a coalmine warns of dwindling breathable air, the honeybee can indicate the health of an ecosystem. Honeybees are the most important pollinators of fruit-bearing flowers, and share similar ecological niches with many other pollinators; therefore, the health of a honeybee colony can reflect the conditions of a whole ecosystem. The health of a colony may be mirrored in social signals that bees exchange during their sophisticated body movements such as the waggle dance. To observe these changes, we developed an automatic system that records and quantifies social signals under normal beekeeping conditions. Here, we describe the system and report representative cases of normal social behavior in honeybees. Our approach utilizes the fact that honeybee bodies are electrically charged by friction during flight and inside the colony, and thus they emanate characteristic electrostatic fields when they move their bodies. These signals, together with physical measurements inside and outside the colony (temperature, humidity, weight of the hive, and activity at the hive entrance) will allow quantification of normal and detrimental conditions of the whole colony. The information provided instructs how to setup the recording device, how to install it in a normal bee colony, and how to interpret its data. Frontiers Media S.A. 2021-04-28 /pmc/articles/PMC8115936/ /pubmed/33994968 http://dx.doi.org/10.3389/fnbeh.2021.647224 Text en Copyright © 2021 Paffhausen, Petrasch, Greggers, Duer, Wang, Menzel, Stieber, Haink, Geldenhuys, Čavojská, Stein, Wutke, Voigt, Coburn and Menzel. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms. |
spellingShingle | Behavioral Neuroscience Paffhausen, Benjamin H. Petrasch, Julian Greggers, Uwe Duer, Aron Wang, Zhengwei Menzel, Simon Stieber, Peter Haink, Karén Geldenhuys, Morgan Čavojská, Jana Stein, Timo A. Wutke, Sophia Voigt, Anja Coburn, Josephine Menzel, Randolf The Electronic Bee Spy: Eavesdropping on Honeybee Communication via Electrostatic Field Recordings |
title | The Electronic Bee Spy: Eavesdropping on Honeybee Communication via Electrostatic Field Recordings |
title_full | The Electronic Bee Spy: Eavesdropping on Honeybee Communication via Electrostatic Field Recordings |
title_fullStr | The Electronic Bee Spy: Eavesdropping on Honeybee Communication via Electrostatic Field Recordings |
title_full_unstemmed | The Electronic Bee Spy: Eavesdropping on Honeybee Communication via Electrostatic Field Recordings |
title_short | The Electronic Bee Spy: Eavesdropping on Honeybee Communication via Electrostatic Field Recordings |
title_sort | electronic bee spy: eavesdropping on honeybee communication via electrostatic field recordings |
topic | Behavioral Neuroscience |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8115936/ https://www.ncbi.nlm.nih.gov/pubmed/33994968 http://dx.doi.org/10.3389/fnbeh.2021.647224 |
work_keys_str_mv | AT paffhausenbenjaminh theelectronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT petraschjulian theelectronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT greggersuwe theelectronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT dueraron theelectronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT wangzhengwei theelectronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT menzelsimon theelectronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT stieberpeter theelectronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT hainkkaren theelectronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT geldenhuysmorgan theelectronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT cavojskajana theelectronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT steintimoa theelectronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT wutkesophia theelectronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT voigtanja theelectronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT coburnjosephine theelectronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT menzelrandolf theelectronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT paffhausenbenjaminh electronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT petraschjulian electronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT greggersuwe electronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT dueraron electronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT wangzhengwei electronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT menzelsimon electronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT stieberpeter electronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT hainkkaren electronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT geldenhuysmorgan electronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT cavojskajana electronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT steintimoa electronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT wutkesophia electronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT voigtanja electronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT coburnjosephine electronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings AT menzelrandolf electronicbeespyeavesdroppingonhoneybeecommunicationviaelectrostaticfieldrecordings |