articleTop 10% cited
The Organization of Escape Behaviour in the Crayfish
Journal of Experimental Biology · 1972 · Vol. 56(1) · pp. 1–18
Jeffrey J. Wine✉(University of California, Los Angeles)Franklin B. Krasne
Abstract
ABSTRACT Invertebrate escape reflexes have long been favoured preparations for investigating neuronal substrates of behaviour. The large size of many of their component neurones make them accessible to current micro-electrode techniques, and selection pressures for rapidity of response have probably caused them to evolve in the direction of the maximal neurological simplicity consistent with their function. Indeed, given our current technical and conceptual limitations, they are probably among the very few behaviour patterns that we may presently hope to analyse with any degree of completeness.
Neurobiology and Insect Physiology ResearchNeural dynamics and brain functionAdvanced Memory and Neural ComputingCrayfishNeuroscienceSimplicityBiologyFunction (biology)Selection (genetic algorithm)EcologyZoologyComputer scienceEvolutionary biology
MeSH terms
Action PotentialsAnimalsAxonsCentral Nervous SystemAstacoideaElectrophysiologyEscape ReactionFemaleHandling, PsychologicalMalePhotic Stimulation
Citations
439
FWCI
4.55
field-weighted impact
References
35
Percentile
96%
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Citations per year
References
A Physiological Solution for Freshwater Crustaceans
Experimental Biology and Medicine · 1936 · 1,071 citations
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