Russell C. Wyeth, Ph.D.

Affiliations: 
Biology St. Francis Xavier University, Saint Andrews, Nova Scotia, Canada 
Area:
invertebrate neuroethology, gastropod neurobiology
Website:
http://people.stfx.ca/rwyeth/
Google:
"Russell Wyeth"
Mean distance: 14.36 (cluster 6)
 
SNBCP
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Publications

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Wyeth RC, Holden T, Jalala H, et al. (2021) Rare-Earth Magnets Influence Movement Patterns of the Magnetically Sensitive Nudibranch in Its Natural Habitat. The Biological Bulletin. 240: 105-117
Webber MP, Thomson JWS, Buckland-Nicks J, et al. (2017) GABA-, histamine-, and FMRFamide-immunoreactivity in the visual, vestibular and central nervous systems of Hermissenda crassicornis. The Journal of Comparative Neurology
Merovitch N, Doyle JM, Wyeth RC, et al. (2016) Data on horizontal and vertical movements of zebrafish during appetitive conditioning. Data in Brief. 9: 758-763
Doyle JM, Merovitch N, Wyeth RC, et al. (2016) A simple automated system for appetitive conditioning of zebrafish in their home tanks. Behavioural Brain Research
Ells V, Filip N, Bishop CD, et al. (2016) A true test of colour effects on marine invertebrate larval settlement Journal of Experimental Marine Biology and Ecology. 483: 156-161
Murray JA, Wyeth RC. (2015) Introduction to the Symposium--Chemicals that Organize Ecology: Towards a Greater Integration of Chemoreception, Neuroscience, Organismal Biology, and Chemical Ecology. Integrative and Comparative Biology. 55: 444-6
Carrigan ID, Croll RP, Wyeth RC. (2015) Morphology, innervation, and peripheral sensory cells of the siphon of aplysia californica. The Journal of Comparative Neurology
McCullagh GB, Bishop CD, Wyeth RC. (2014) One rhinophore probably provides sufficient sensory input for odour-based navigation by the nudibranch mollusc Tritonia diomedea. The Journal of Experimental Biology. 217: 4149-58
Heyland A, Croll R, Goodall S, et al. (2014) Trichoplax adhaerens, an enigmatic basal metazoan with potential. Methods in Molecular Biology (Clifton, N.J.). 1128: 45-61
Wyeth RC, Croll RP. (2011) Peripheral sensory cells in the cephalic sensory organs of Lymnaea stagnalis. The Journal of Comparative Neurology. 519: 1894-913
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