Neural responses of goldfish lateral line afferents to vortex motions

Chagnaud BP (2006)
Journal of Experimental Biology 209(2): 327-342.

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Chagnaud BP. Neural responses of goldfish lateral line afferents to vortex motions. Journal of Experimental Biology. 2006;209(2):327-342.
Chagnaud, B. P. (2006). Neural responses of goldfish lateral line afferents to vortex motions. Journal of Experimental Biology, 209(2), 327-342. doi:10.1242/jeb.01982
Chagnaud, B. P. (2006). Neural responses of goldfish lateral line afferents to vortex motions. Journal of Experimental Biology 209, 327-342.
Chagnaud, B.P., 2006. Neural responses of goldfish lateral line afferents to vortex motions. Journal of Experimental Biology, 209(2), p 327-342.
B.P. Chagnaud, “Neural responses of goldfish lateral line afferents to vortex motions”, Journal of Experimental Biology, vol. 209, 2006, pp. 327-342.
Chagnaud, B.P.: Neural responses of goldfish lateral line afferents to vortex motions. Journal of Experimental Biology. 209, 327-342 (2006).
Chagnaud, B. P. “Neural responses of goldfish lateral line afferents to vortex motions”. Journal of Experimental Biology 209.2 (2006): 327-342.
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18 Citations in Europe PMC

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Responses of medullary lateral line units of the rudd, Scardinius erythrophthalmus, and the nase, Chondrostoma nasus, to vortex streets.
Winkelnkemper J, Kranz S, Bleckmann H., J Comp Physiol A Neuroethol Sens Neural Behav Physiol 204(2), 2018
PMID: 29075852
The influence of turbulence on the sensory basis of rheotaxis.
Elder J, Coombs S., J Comp Physiol A Neuroethol Sens Neural Behav Physiol 201(7), 2015
PMID: 25994410
Medullary lateral line units of rudd, Scardinius erythrophthalmus, are sensitive to Kármán vortex streets.
Klein A, Winkelnkemper J, Dylda E, Bleckmann H., J Comp Physiol A Neuroethol Sens Neural Behav Physiol 201(7), 2015
PMID: 26018072
Temporal precision and reliability in the velocity regime of a hair-cell sensory system: the mechanosensory lateral line of goldfish, Carassius auratus.
Goulet J, van Hemmen JL, Jung SN, Chagnaud BP, Scholze B, Engelmann J., J Neurophysiol 107(10), 2012
PMID: 22378175
Toral lateral line units of goldfish, Carassius auratus, are sensitive to the position and vibration direction of a vibrating sphere.
Meyer G, Klein A, Mogdans J, Bleckmann H., J Comp Physiol A Neuroethol Sens Neural Behav Physiol 198(9), 2012
PMID: 22669431
Wake tracking and the detection of vortex rings by the canal lateral line of fish.
Franosch JM, Hagedorn HJ, Goulet J, Engelmann J, van Hemmen JL., Phys Rev Lett 103(7), 2009
PMID: 19792690
Object localization through the lateral line system of fish: theory and experiment.
Goulet J, Engelmann J, Chagnaud BP, Franosch JM, Suttner MD, van Hemmen JL., J Comp Physiol A Neuroethol Sens Neural Behav Physiol 194(1), 2008
PMID: 18060550
Lateral line nerve fibers do not code bulk water flow direction in turbulent flow.
Chagnaud BP, Bleckmann H, Hofmann MH., Zoology (Jena) 111(3), 2008
PMID: 18329260
Metamorphosis-related changes in the lateral line system of lampreys, Petromyzon marinus.
Gelman S, Ayali A, Kiemel T, Sanovich E, Cohen AH., J Comp Physiol A Neuroethol Sens Neural Behav Physiol 194(11), 2008
PMID: 18795304
Responses to dipole stimuli of anterior lateral line nerve fibres in goldfish, Carassius auratus, under still and running water conditions.
Chagnaud BP, Hofmann MH, Mogdans J., J Comp Physiol A Neuroethol Sens Neural Behav Physiol 193(2), 2007
PMID: 17075719
Kármán vortex street detection by the lateral line.
Chagnaud BP, Bleckmann H, Hofmann MH., J Comp Physiol A Neuroethol Sens Neural Behav Physiol 193(7), 2007
PMID: 17503054
The hydrodynamic footprint of a benthic, sedentary fish in unidirectional flow.
Coombs S, Anderson E, Braun CB, Grosenbaugh M., J Acoust Soc Am 122(2), 2007
PMID: 17672669

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