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Titlebook: Chemical Signals in Vertebrates 3; Dietland Müller-Schwarze,Robert M. Silverstein Book 1983 Springer Science+Business Media New York 1983

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書(shū)目名稱Chemical Signals in Vertebrates 3
編輯Dietland Müller-Schwarze,Robert M. Silverstein
視頻videohttp://file.papertrans.cn/225/224443/224443.mp4
圖書(shū)封面Titlebook: Chemical Signals in Vertebrates 3;  Dietland Müller-Schwarze,Robert M. Silverstein Book 1983 Springer Science+Business Media New York 1983
描述The first volume in this series appeared in 1977, the second in 1980. From these volumes and the present one, some research trends in chemical communication can be perceived. In the 1977 volume, studies on 13 animal taxa were reported. In the present volume, the number is 25. This taxonomie diversi- fication of research since the first volume of this series demon- strates the wide variety of ecological adaptions, although no new general principles of chemical communication have ernerged. Further- more, divergences in chemical comrnunication below the species level have become more apparent. In general, more sophisticated observa- tions and techniques have led to greater awareness of the com- plexities in chemical communication. As such awareness has also developed in the field of insect chemical communication, there has been a corresponding increase in the identification of the chemical compounds involved. However, in the vertebrates, no such correlation exists; in the present volume, conclusive chemical identifications of semiochemicals are remarkable by their paucity.
出版日期Book 1983
關(guān)鍵詞Vine; behavior; breeding; chemistry; ecology; endocrinology; environment; experiment; genetics; insects; iron;
版次1
doihttps://doi.org/10.1007/978-1-4757-9652-0
isbn_softcover978-1-4757-9654-4
isbn_ebook978-1-4757-9652-0
copyrightSpringer Science+Business Media New York 1983
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https://doi.org/10.1007/b138010ap-proneness” have long been recognized, (in which certain individuals are caught less or more frequently than would be expected by chance if the traps were sampling the population randomly (Chitty and Kempson 1949)), it is surprising that so little attention has been paid to whether the ability of
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chemical compounds involved. However, in the vertebrates, no such correlation exists; in the present volume, conclusive chemical identifications of semiochemicals are remarkable by their paucity.978-1-4757-9654-4978-1-4757-9652-0
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Priming Pheromones in Miceidae family (Bronson and Dezell, 1968; Eleftheriou et al., 1962; Vandenbergh, 1980) and in a number of Microtidae: . (Clulow and Langford, 1971), . and . (Clulow and Clarke, 1968; Clarke and Clulow, 1973), . (Hasler and Nalbandov, 1974) and . (Hasler and Banks, 1975; Mallory and Brooks, 1980). In al
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Und die Moral von der Geschicht?,wing the envenomated rodent to wander up to 600 cm before succumbing to the venom (Estep et al., 1981). The snakes then follow the chemical trail left by the envenomated prey. Although this predatory strategy risks losing the prey, it avoids tissue damage that could result from rodent teeth and claw
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