Characterisation of a blowfly male-specific neuron using behaviourally generated visual stimuli

Trischler C, Böddeker N, Egelhaaf M (2007)
Journal of Comparative Physiology A-Neuroethology Sensory Neural and Behavioral Physiology 193(5): 559-572.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
Download
OA 1.52 MB
Autor*in
Stichworte
male-specific; chasing behaviour; naturalistic stimuli; neuron; fly; vision
Erscheinungsjahr
2007
Zeitschriftentitel
Journal of Comparative Physiology A-Neuroethology Sensory Neural and Behavioral Physiology
Band
193
Ausgabe
5
Seite(n)
559-572
ISSN
0340-7594
eISSN
1432-1351
Page URI
https://pub.uni-bielefeld.de/record/1593872

Zitieren

Trischler C, Böddeker N, Egelhaaf M. Characterisation of a blowfly male-specific neuron using behaviourally generated visual stimuli. Journal of Comparative Physiology A-Neuroethology Sensory Neural and Behavioral Physiology. 2007;193(5):559-572.
Trischler, C., Böddeker, N., & Egelhaaf, M. (2007). Characterisation of a blowfly male-specific neuron using behaviourally generated visual stimuli. Journal of Comparative Physiology A-Neuroethology Sensory Neural and Behavioral Physiology, 193(5), 559-572. https://doi.org/10.1007/s00359-007-0212-3
Trischler, Christine, Böddeker, Norbert, and Egelhaaf, Martin. 2007. “Characterisation of a blowfly male-specific neuron using behaviourally generated visual stimuli”. Journal of Comparative Physiology A-Neuroethology Sensory Neural and Behavioral Physiology 193 (5): 559-572.
Trischler, C., Böddeker, N., and Egelhaaf, M. (2007). Characterisation of a blowfly male-specific neuron using behaviourally generated visual stimuli. Journal of Comparative Physiology A-Neuroethology Sensory Neural and Behavioral Physiology 193, 559-572.
Trischler, C., Böddeker, N., & Egelhaaf, M., 2007. Characterisation of a blowfly male-specific neuron using behaviourally generated visual stimuli. Journal of Comparative Physiology A-Neuroethology Sensory Neural and Behavioral Physiology, 193(5), p 559-572.
C. Trischler, N. Böddeker, and M. Egelhaaf, “Characterisation of a blowfly male-specific neuron using behaviourally generated visual stimuli”, Journal of Comparative Physiology A-Neuroethology Sensory Neural and Behavioral Physiology, vol. 193, 2007, pp. 559-572.
Trischler, C., Böddeker, N., Egelhaaf, M.: Characterisation of a blowfly male-specific neuron using behaviourally generated visual stimuli. Journal of Comparative Physiology A-Neuroethology Sensory Neural and Behavioral Physiology. 193, 559-572 (2007).
Trischler, Christine, Böddeker, Norbert, and Egelhaaf, Martin. “Characterisation of a blowfly male-specific neuron using behaviourally generated visual stimuli”. Journal of Comparative Physiology A-Neuroethology Sensory Neural and Behavioral Physiology 193.5 (2007): 559-572.
Alle Dateien verfügbar unter der/den folgenden Lizenz(en):
Copyright Statement:
Dieses Objekt ist durch das Urheberrecht und/oder verwandte Schutzrechte geschützt. [...]
Volltext(e)
Access Level
OA Open Access
Zuletzt Hochgeladen
2019-09-06T08:48:02Z
MD5 Prüfsumme
a99c06a009fe956f63c1c6c1152e9c14


12 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

Photoreceptor signalling is sufficient to explain the detectability threshold of insect aerial pursuers.
Rigosi E, Wiederman SD, O'Carroll DC., J Exp Biol 220(pt 23), 2017
PMID: 29187619
A network of visual motion-sensitive neurons for computing object position in an arthropod.
Medan V, Berón De Astrada M, Scarano F, Tomsic D., J Neurosci 35(17), 2015
PMID: 25926445
Neuronal representation of visual motion and orientation in the fly medulla.
Spalthoff C, Gerdes R, Kurtz R., Front Neural Circuits 6(), 2012
PMID: 23087615
Spatial vision in insects is facilitated by shaping the dynamics of visual input through behavioral action.
Egelhaaf M, Boeddeker N, Kern R, Kurtz R, Lindemann JP., Front Neural Circuits 6(), 2012
PMID: 23269913
Visual control of navigation in insects and its relevance for robotics.
Srinivasan MV., Curr Opin Neurobiol 21(4), 2011
PMID: 21689925
Feature detection and the hypercomplex property in insects.
Nordström K, O'Carroll DC., Trends Neurosci 32(7), 2009
PMID: 19541374
Sexual dimorphism in the hoverfly motion vision pathway.
Nordström K, Barnett PD, Moyer de Miguel IM, Brinkworth RS, O'Carroll DC., Curr Biol 18(9), 2008
PMID: 18450449

58 References

Daten bereitgestellt von Europe PubMed Central.


DGM, J Comp Physiol A 119(), 1977

N, Proc R Soc Lond B 270(), 2003

N, Proc R Soc Lond B 270(), 2003
A single control system for smooth and saccade-like pursuit in blowflies.
Boeddeker N, Egelhaaf M., J. Exp. Biol. 208(Pt 8), 2005
PMID: 15802679

A, J Comp Physiol A 188(), 2002

TS, J Comp Physiol A 99(), 1975

TS, J Comp Physiol A 140(), 1980

M, J Neurosci 25(), 2002

M, 2005
[Pseudopupil phenomena in the compound eye of drosophila]
Franceschini N, Kirschfeld K., Kybernetik 9(5), 1971
PMID: 5134358

N, Nature 291(), 1981

BJ, Vis Res 30(), 1990
The functional organization of male-specific visual neurons in flies.
Gilbert C, Strausfeld NJ., J. Comp. Physiol. A 169(4), 1991
PMID: 1723431
Descending pathways connecting the male-specific visual system of flies to the neck and flight motor.
Gronenberg W, Strausfeld NJ., J. Comp. Physiol. A 169(4), 1991
PMID: 1723432

RC, J Comp Physiol A 145(), 1981

K, Biol Cybern 45(), 1982

K, Biol Cybern 46(), 1982

K, Proc R Soc Lond B 208(), 1980

K, 1989

R, J Comp Physiol A 149(), 1982

R, 1993

R, J Comp Physiol A 149(), 1982

EP, Proc R Soc Lond B 267(), 2000
Instability helps virtual flies to mate.
Huls T., Biol Cybern 93(3), 2005
PMID: 16086190
Processing of complex stimuli and natural scenes in the visual cortex.
Kayser C, Kording KP, Konig P., Curr. Opin. Neurobiol. 14(4), 2004
PMID: 15302353
Function of a fly motion-sensitive neuron matches eye movements during free flight.
Kern R, van Hateren JH, Michaelis C, Lindemann JP, Egelhaaf M., PLoS Biol. 3(6), 2005
PMID: 15884977
Dendritic structure and receptive-field organization of optic flow processing interneurons in the fly.
Krapp HG, Hengstenberg B, Hengstenberg R., J. Neurophysiol. 79(4), 1998
PMID: 9535957

MF, Nature 243(), 1973

MF, J Insect Physiol 38(), 1992

MF, J Comp Physiol A 173(), 1993

MF, J Comp Physiol A 173(), 1993
Visual acuity in insects.
Land MF., Annu. Rev. Entomol. 42(), 1997
PMID: 15012311

MF, J Comp Physiol A 89(), 1974

MF, J Comp Physiol A 156(), 1985

JP, Vis Res 43(), 2003
Insect detection of small targets moving in visual clutter.
Nordstrom K, Barnett PD, O'Carroll DC., PLoS Biol. 4(3), 2006
PMID: 16448249

AUTHOR UNKNOWN, 0
Neurobiology: The many faces of adaptation.
Reinagel P., Nature 412(6849), 2001
PMID: 11518947
Vision and the statistics of the visual environment.
Simoncelli EP., Curr. Opin. Neurobiol. 13(2), 2003
PMID: 12744966
Natural image statistics and neural representation.
Simoncelli EP, Olshausen BA., Annu. Rev. Neurosci. 24(), 2001
PMID: 11520932

JH, Vis Res 37(), 1997

JH, J Exp Biol 202(), 1999
Function and coding in the blowfly H1 neuron during naturalistic optic flow.
van Hateren JH, Kern R, Schwerdtfeger G, Egelhaaf M., J. Neurosci. 25(17), 2005
PMID: 15858060

AUTHOR UNKNOWN, 0

H, Philos Trans R Soc Lond B 312(), 1986

H, Philos Trans R Soc Lond B 312(), 1986

H, Philos Trans R Soc Lond B 312(), 1986

AK, Vis Res 40(), 2000

C, Biol Cybern 32(), 1979

C, Biol Cybern 45(), 1982

J, J Comp Physiol A 150(), 1983
Export

Markieren/ Markierung löschen
Markierte Publikationen

Open Data PUB

Web of Science

Dieser Datensatz im Web of Science®
Quellen

PMID: 17333206
PubMed | Europe PMC

Suchen in

Google Scholar