2 edition of non-impulsive stretch-receptor complex of the crab found in the catalog.
non-impulsive stretch-receptor complex of the crab
A. R. Blight
|Statement||by A.R. Blight and R. Llina s.|
|Series||Philosophical Transactions of the Royal Society of London -- Vol. 290, no. 1039, 31 July 1980, pp219-276|
|Contributions||Llina s, R., Royal Society.|
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Crustacean elastic strand receptors that function without impulses. () The non-impulsive stretch-receptor complex of the crab: a study of depolarisation-release coupling at a tonic sensorimotor synapse. Phil Trans R Soc Lond B – Cannone AJ () Crustacean elastic strand receptors that function without impulses.
michellemadsenpoet.com by: 5. Blight, A.R. & Llinás, R. () The non-impulsive stretch-receptor complex of the crab: a stucby of depolarization-release coupling at a tonic sensorimotor synapse, Phil. Trans. Soc. B,– CrossRef Google ScholarCited by: 9. I of the vortex: from neurons to self by Rodolfo R Llinás () 35 editions published between and in English and Spanish and held by 1, WorldCat member libraries worldwide.
Synaptic Limitations to Contrast Coding in the Retina of the Blowfly Calliphora The Non-Impulsive Stretch-Receptor Complex of the Crab: A Study of Depolarization-Release Coupling at a Tonic. Harvey, A. Larval settlement and metamorphosis in the sand crab Emerita talpoida (Crustacea: Decapoda: Anomura).
Mar. Biol.Harzsch, S. Ontogeny of the ventral nerve cord in malacos-tracan crustaceans: A common plan for neuronal development in Crustacea, Hexapoda and other Arthropoda.
Arthropod Struc. Dev. 32, The blue crab T fiber synapse, associated with the stretch receptor of the swimming leg, has a nonspiking presynaptic element that mediates tonic transmission. This banner text can have markup. web; books; video; audio; software; images; Toggle navigation.
-LAWRENCE R.F., " Contributions to a knowledge of the fauna of South-West Africa. Arachnida". Ann. Afr. Mus. 25 (1): LAWRENCE R.F., these phyla spans an enormous range of body architectures, with the maximally simple placozoans at opposite extremes, with just four differentiated somatic cell types, and the cnidarians, of which some of the most complex forms, such as cubozoans, possess differentiated muscle and nervous systems, and some remarkably complex sensory organs.
Random complex automata: analogy with spin glasses H. Flyvbjerg The articles in this book are written records of talks presented at a meeting held at the Gentofte Hotel, Copenhagen, during the three days AugustThey have been arranged in an order that places more general aspects of the subject towards the beginning.