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Titlebook: Orientation and Communication in Arthropods; Miriam Lehrer Book 1997 Springer Basel AG 1997 adaptation.arthropods.bee.behavior.evolution.i

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书目名称Orientation and Communication in Arthropods
编辑Miriam Lehrer
视频video
丛书名称Experientia Supplementum
图书封面Titlebook: Orientation and Communication in Arthropods;  Miriam Lehrer Book 1997 Springer Basel AG 1997 adaptation.arthropods.bee.behavior.evolution.i
描述The present volume deals with the most fascinating aspects of sensory performance studied in insects, crustaceans and spiders. Arthropods inhabit practically every conceivable ecological niche, and are perfectly adapted to cope with the constraints of their natural habitats. They move on the ground, in water, and in the air. They use visual, olfactory, acoustical, vibratory, and tactile cues for orientation, to recognize and pinpoint their target, their home place, a feeding site, a prey, or a potential mate. Many arthropods use celestial (skylight) and terrestrial (magnetic) compass cues for orientation, and some of them were shown to develop, through experience, oriented behaviours based on a variety of innate, hard-wired orientation mechanisms. In many cases, aspects of behaviour that are involved in orientation cannot be separated from inter- and intraspecific communication. The book brings to the fore the role of communication not only in social and sexual behaviours, but also in the context of oriented locomotion. Top, internationally renowned scientists have contributed to this volume and have succeeded in presenting a book full of highlights which will be of great interest
出版日期Book 1997
关键词adaptation; arthropods; bee; behavior; evolution; insects; water
版次1
doihttps://doi.org/10.1007/978-3-0348-8878-3
isbn_softcover978-3-0348-9811-9
isbn_ebook978-3-0348-8878-3Series ISSN 1664-431X Series E-ISSN 2504-3692
issn_series 1664-431X
copyrightSpringer Basel AG 1997
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T. S. Collett,J. Zeillts and a base for more meaningful future research. The editors are encouraged by the progress, with which they hope the reader will agree, is made in this direction. No pretense is made, however, that completely satisfactory integration of theore­ tical results and applications has been accomplishe
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M. J. Weissburgor each pass of pattern labeling and cluster center updating is essentially dominated by the time required to fetch the pattern matrix once. Detailed architectural configuration and the system performance evaluation are presented. The modularity and the regularity of the system architecture make it
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F. G. Barthing application examples of the array processor are discussed. One is the wavefront processing for least-square error solution with application to image reconstructions. The other is 2-D image correlation with application to image matching. As the trend of massively parallel system design points to
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W. H. KirchnerCorporation) operational at NASA Goddard since mid-1983 [10.3]. These full-array machines are significant in that their processing elements (one-bit microprocessors) are integrated at eight per chip, their operational speeds are equivalent to tens of billions of instructions per second, and they rep
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D. von Helversenor each pass of pattern labeling and cluster center updating is essentially dominated by the time required to fetch the pattern matrix once. Detailed architectural configuration and the system performance evaluation are presented. The modularity and the regularity of the system architecture make it
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