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170602s2017 ne ob 001 0 eng d |
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|a9780128052815 (electronic bk.)
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|a0128052813 (electronic bk.)
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|a0128051949
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|a9780128051948
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|a9780128051948 (hbk.)
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|aNLE|beng|epn|cNLE|dOCLCO|dOCLCQ|dYDX|dU3G|dN$T|dOPELS|dMERER|dOTZ|dD6H|dUAB|dOCLCF|dOCLCQ|dUPM|dU3W|dLVT|dUKMGB|dS2H
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|aeng
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|aQL444.B83
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|a595.32|223
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|aNF|tLCC|p|dQL444.B83|e|c
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1
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|aSmirnov, N. N.,|eauthor.
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|aPhysiology of the Cladocera|h[electronic resource] /|cNikolai Smirnov.
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|aSecond edition.
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|aAmsterdam :|bAcademic Press,|c2017.
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|a1 online resource
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|a1. General 2. Methods 3. Chemical Composition 4. Nutrition 5. Respiration 6. Circulation 7. Excretion 8. Osmotic Regulation 9. Cell and Tissue Metabolism 10. Growth and Molting 11. Reproduction 12. Locomotion 13. Nervous System and Sense Organs 14. Behavior 15. Ecophysiology 16. A Cytological Perspective 17. The Genomics of Cladoceran Physiology: Daphnia as a Model 18. Notes on the Physiology of Embryogenesis Conclusions: Special Traits of Cladoceran Physiology.
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|aIncludes bibliographical references (p. 303-385) and indexes.
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|aGeneral -- Methods -- Chemical composition -- Nutrition -- Respiration -- Circulation -- Excretion -- Osmotic regulation -- Cell and tissue metabolism -- Growth and molting -- Reproduction -- Locomotion -- Nervous system and sense organs -- Behavior -- Ecophysiology -- A cytological perspective / Margaret J. Beaton, Carlie M. Peters -- The genomics of cladoceran physiology: Daphnia as a model / K. Van Damme, D. Becker, E. Turner, J.R. Shaw, J.K. Colbourne, B. Zeis, M. Cordellier, E. Decaestecker, M.E. Pfrender -- Notes on the physiology of embryogenesis / A.A. Kotov.
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|aPhysiology of the Cladocera, Second Edition, is a much-needed summary of foundational information on these increasingly important model organisms. This unique and valuable review is based on the world's literature, including Russian research not previously widely available, and offers systematically arranged data on the physiology of Cladocera, assisting with explanation of their life and distribution. It features the addition of new sections and a vast amount of new information, such as the latest data on feeding, nutrition, pathological physiology, chemical composition, neurosecretion, and behavior, as well as hormonal regulation, antioxidants, and the biochemical background of effects of natural and anthropogenic factors. Additional expertly updated contributions in genetics and cytology, and a new chapter in embryology, round out the physiological chapters, and provide comprehensive insight into the state of knowledge of Cladocera and their underlying mechanisms. Cladocera crustaceans have become globally studied for many purposes, including genetic, molecular, ecological, environmental, water quality, systematics, and evolutionary biology research. Since the genome of Daphnia was sequenced and published, that system has gained much wider exposure, also leading to a rapidly growing awareness of the importance of understanding physiological processes as they relate to evolutionary and ecological genomics as well as ecogenomic toxicology. However, the physiological background on Cladocera has been fragmentary (including on the other 700 known species besides Daphnia), despite the extensive literature on species identification and morphology. This work addresses this issue by collecting and synthesizing from the literature the state of knowledge of cladoceran physiology, including discussion on both adequately and inadequately investigated fields, and thus directions of future research.
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|aCIP data; item not viewed.
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|aCladocera.
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|aCladocera|xPhysiology.
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|aSCIENCE|xLife Sciences|xZoology|xGeneral.|2bisacsh
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|aCladocera.|2fast|0(OCoLC)fst00863181
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|aElectronic books.
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|aElectronic books.
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|uhttps://www.sciencedirect.com/science/book/9780128051948
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