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Neil, D. (2012)
Publisher: University of Glasgow
Languages: English
Types: Book
Subjects:
  • The results below are discovered through our pilot algorithms. Let us know how we are doing!

    • Chrachri, A. and Neil, D.M. (1993). Interaction and synchronization between two abdominal motor systems in crayfish. Journal of Neurophysiology 69, 1373-1383.
    • Chrachri, A., Neil, D.M. and Mulloney, B. (l994). State-dependent responses of two motor systems in the crayfish Pacifastacus leniusculus. Journal of Comparative Physiology A 175, 371-380.
    • Elwood, R.W., Barr, S. and Patterson, L. (2009). Pain and stress in crustaceans? Applied Animal Behaviour Science 118, 128-136.
    • Fleming, P.A., Muller, D., Bateman, P.W. (2007). Leave it all behind: a taxonomic perspective of autotomy in invertebrates. Biological Reviews 82, 481-510.
    • Garm, A. (2005). Mechanosensory properties of the mouthpart setae of the European shore crab Carcinus maenas. Marine Biology 147, 1179-1190.
    • Hartman, H.B., Johnston, E.E. and Storer, P.D. (1997). Manipulation by the crab claw is dependent upon chordotonal organ afference. Journal of Experimental Zoology 279, 579-586.
    • Holmes, J.M., Neil, D.M., Galler, S. and Hilber, K. (2002). Correlation of Synaptic and Mechanical Properties of Two Slow Fibre Phenotypes in a Crustacean Muscle. In: (ed. K. Wiese) The Crustacean Nervous System, Birkhäuser Verlag, Basel, Switzerland pp. 341-352.
    • Juanes, F. and Smith, L. (1995). The ecological consequences of limb damage and loss in decapod crustaceans: a review and prospectus. Journal of Experimental Marine Biology and Ecology 193, 197-223.
    • Larimer, J.L. and Moore, D. (2003). Neural basis of a simple behavior: abdominal positioning in crayfish. Microscopical Research Techniques 60, 346-359.
    • Libersat, F., S.N. Zill, and F. Clarac (1987). Single-unit responses and reflex effects of forcesensitive mechanoreceptors of the dactyl of the crab. Journal of Neurophysiology 57, 1601- 1617.
    • Marder, E. and Bucher, D. (2007). Understanding Circuit Dynamics Using the Stomatogastric Nervous System of Lobsters and Crabs. Annual Reviews of Physiology 69, 291-316.
    • McVean A. (1976). Autotomy: Mini Review. Comparative Biochemistry and Physiology 51A, 497-505.
    • Neil, D.M. (2010). The effect of the Crustastun™ on nerve activity in crabs and lobsters. Scientific Report to Studham Technologies.
    • Neil, D.M. and Thompson, J. (2012). The stress induced by the Crustastun™ process in two commercially important decapod crustaceans: the edible brown Cancer pagurus and the European lobster Homarus gammarus. Scientific Report to Studham Technologies.
    • Patterson, L., Dick, J.T.A. and Elwood, R.W. (2007). Physiological stress responses in the edible crab, Cancer pagurus, to the fishery practice of de-clawing. Marine Biology 152, 265-272.
    • Robb, D. (1999). The humane slaughter of Crustacea: Electrical stunning. Unpublished research report.
    • Roth, B. and Øines, S. (2010). Stunning and killing of edible crabs (Cancer pagurus). Animal Welfare 19, 287-294
    • Smith, L.D. and Hines, A.H. (1991). The effect of cheliped loss on blue crab Callinectes sapidus Rathbun foraging rate on soft-shelled clams Mya arenaria. Journal of Experimental Marine Biology and Ecology 151, 245-256.
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