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Titlebook: Octopus; Physiology and Behav M. J. Wells Book 1978 M. J. Wells 1978 aging.anatomy.behavior.blood vessel.brain.fish.growth.learning.physiol

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Respiration, circulation and excretion,s simultaneously, since these observations will undoubtedly reveal some very elegant control mechanisms. In the meantime, one is obliged to consider the workings of the three in the classical manner, one at a time; remembering that, eventually, the bits will patch together to yield a much more beautiful story.
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Endocrinology,trol of gonadial development and this story necessarily fills the greater part of the present chapter. Apart from this, a scattering of putative endocrine organs has been identified, but there is no solid evidence of the function of any of these.
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Introduction,dict simply from a knowledge of its cell biology. Why was the basic molluscan design extended in the particular ways that we find in an octopus? Chemistry cannot tell us. But perhaps behaviour can. This is why this book, unfettered by the need to be comparative, includes much about behaviour, and ra
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An inventory of the sense organs,tems. We can think of ways to test hypotheses about the visual analysing system so that there is a considerable literature on .’ responses to figures of differing shapes, sizes and shades. There is no equivalent body of information about, for example, the animal’s chemotactile sense, which is probab
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Learning and brain lesions: 1,o changes in their biochemistry. The structural changes that result in a long-term learned change in response to a specific stimulus constitute a ‘memory store’, ‘trace’ or ‘representation’ of that event. A memory store is at present a concept; nobody has ever observed one in any animal, only the co
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Book 1978om predators or pursue their prey (Sections 3.2.2, 3.2.4). Digestion, too would seem to be limiting. As with other molluscs, digestion in Octopus is based on secretion­ absorption cycles by a massive diverticulum of the gut, an adequate system in a less hectic past, but scarcely appropriate in a pre
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ey flee from predators or pursue their prey (Sections 3.2.2, 3.2.4). Digestion, too would seem to be limiting. As with other molluscs, digestion in Octopus is based on secretion­ absorption cycles by a massive diverticulum of the gut, an adequate system in a less hectic past, but scarcely appropriate in a pre978-94-017-2470-8978-94-017-2468-5
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M. J. Wells M.A., Sc.D.t shift in the forward face and peak of the spectrum to lower frequencies and a reduction in the peak spectral density in the manner suggested by Phillips (1977). This overshoot, furthermore, occurred when k.h ≈ 0.67 [where the resonant response rate has been calculated by Hasselmann and Hasselmann
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