Literature DB >> 9320517

Transmission of vibration across honeycombs and its detection by bee leg receptors

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Abstract

Vibration of the rims of open cells in a honeycomb, applied in the plane of the comb face, is transmitted across the comb. Attenuation or amplification of the vibratory signal depends on its frequency and on the type of comb. In general, framed combs, both large and small, strongly attenuate higher frequencies, whereas these are amplified in small open combs. The very poor transmission properties of the large framed combs used in commercial hives may explain the bees' habit of freeing an area of comb from the frame in those areas used for dancing. Extracellular electrical recordings from the leg of a honeybee detect large action potentials from receptors that monitor extension of the tibia on the femur. Measurements of threshold displacement amplitudes show these receptors to be sensitive to low frequencies. The amplification properties of unframed combs extend the range of these receptor systems to include frequencies that are emitted by the bee during its dance, namely the 15 Hz abdomen waggle and 250 Hz thorax vibration.

Entities:  

Year:  1996        PMID: 9320517     DOI: 10.1242/jeb.199.12.2585

Source DB:  PubMed          Journal:  J Exp Biol        ISSN: 0022-0949            Impact factor:   3.312


  13 in total

1.  The mechanical leg response to vibration stimuli in cave crickets and implications for vibrosensory organ functions.

Authors:  Nataša Stritih Peljhan; Johannes Strauß
Journal:  J Comp Physiol A Neuroethol Sens Neural Behav Physiol       Date:  2018-06-14       Impact factor: 1.836

2.  Honey bee workers generate low-frequency vibrations that are reliable indicators of their activity level.

Authors:  Michael Hrncir; Camila Maia-Silva; Walter M Farina
Journal:  J Comp Physiol A Neuroethol Sens Neural Behav Physiol       Date:  2018-11-21       Impact factor: 1.836

3.  Key physical wood properties in termite foraging decisions.

Authors:  Sebastian Oberst; Joseph C S Lai; Theodore A Evans
Journal:  J R Soc Interface       Date:  2018-12-21       Impact factor: 4.118

4.  Vibrating the food receivers: a direct way of signal transmission in stingless bees (Melipona seminigra).

Authors:  Michael Hrncir; Veronika M Schmidt; Dirk Louis P Schorkopf; Stefan Jarau; Ronaldo Zucchi; Friedrich G Barth
Journal:  J Comp Physiol A Neuroethol Sens Neural Behav Physiol       Date:  2006-04-01       Impact factor: 1.836

Review 5.  Signals and cues in the recruitment behavior of stingless bees (Meliponini).

Authors:  Friedrich G Barth; Michael Hrncir; Stefan Jarau
Journal:  J Comp Physiol A Neuroethol Sens Neural Behav Physiol       Date:  2008-03-19       Impact factor: 1.836

6.  Social waves in giant honeybees (Apis dorsata) elicit nest vibrations.

Authors:  Gerald Kastberger; Frank Weihmann; Thomas Hoetzl
Journal:  Naturwissenschaften       Date:  2013-05-31

7.  Are terrestrial isopods able to use stridulation and vibrational communication as forms of intra and interspecific signaling and defense strategies as insects do? A preliminary study in Armadillo officinalis.

Authors:  Sofia Cividini; Spyros Sfenthourakis; Giuseppe Montesanto
Journal:  Naturwissenschaften       Date:  2019-12-10

8.  East learns from West: Asiatic honeybees can understand dance language of European honeybees.

Authors:  Songkun Su; Fang Cai; Aung Si; Shaowu Zhang; Jürgen Tautz; Shenglu Chen
Journal:  PLoS One       Date:  2008-06-04       Impact factor: 3.240

Review 9.  Identification of kakusei, a nuclear non-coding RNA, as an immediate early gene from the honeybee, and its application for neuroethological study.

Authors:  Taketoshi Kiya; Atsushi Ugajin; Takekazu Kunieda; Takeo Kubo
Journal:  Int J Mol Sci       Date:  2012-11-22       Impact factor: 5.923

10.  Increased neural activity of a mushroom body neuron subtype in the brains of forager honeybees.

Authors:  Taketoshi Kiya; Takekazu Kunieda; Takeo Kubo
Journal:  PLoS One       Date:  2007-04-18       Impact factor: 3.240

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