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    1. Naturvetenskap och teknik
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    Spider Webs

    Behavior, Function, and Evolution

    AvWilliam Eberhard

    Inbunden, Engelska, 2020

    666 kr

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    E-bok

    1 326 kr

    Beskrivning

    In this lavishly illustrated, first-ever book on how spider webs are built, function, and evolved, William Eberhard provides a comprehensive overview of spider functional morphology and behavior related to web building, and of the surprising physical agility and mental abilities of orb weavers. For instance, one spider spins more than three precisely spaced, morphologically complex spiral attachments per second for up to fifteen minutes at a time. Spiders even adjust the mechanical properties of their famously strong silken lines to different parts of their webs and different environments, and make dramatic modifications in orb designs to adapt to available spaces. This extensive adaptive flexibility, involving decisions influenced by up to sixteen different cues, is unexpected in such small, supposedly simple animals. As Eberhard reveals, the extraordinary diversity of webs includes ingenious solutions to gain access to prey in esoteric habitats, from blazing hot and shifting sand dunes (to capture ants) to the surfaces of tropical lakes (to capture water striders). Some webs are nets that are cast onto prey, while others form baskets into which the spider flicks prey. Some aerial webs are tramways used by spiders searching for chemical cues from their prey below, while others feature landing sites for flying insects and spiders where the spider then stalks its prey. In some webs, long trip lines are delicately sustained just above the ground by tiny rigid silk poles. Stemming from the author's more than five decades observing spider webs, this book will be the definitive reference for years to come.

    Produktinformation

    • Utgivningsdatum:2020-12-01
    • Mått:216 x 279 x 44 mm
    • Vikt:1 858 g
    • Format:Inbunden
    • Språk:Engelska
    • Antal sidor:816
    • Förlag:The University of Chicago Press
    • ISBN:9780226534602

    Utforska kategorier

    • Djurens beteende inom Naturvetenskap och teknik
    • Biovetenskap inom Naturvetenskap och teknik
    • Djurböcker inom Djur och Natur

    Mer om författaren

    William Eberhard is an emeritus scientist at the Smithsonian Tropical Research Institute in Panama and emeritus professor at the Universidad de Costa Rica.

    Recensioner i media

    "This is a wonderful book. In it Eberhard explores the mechanical and evolutionary aspects of spider webs from all sides. The book is lavishly illustrated with photographs of webs appearing throughout. Each chapter has a down-to-earth summary that repeats the main points of the chapter. Eberhard is not afraid to rail against the many errors that infect previous work on spiders and webs, including adultophilia (the tendency to ignore the webs of juvenile spiders), typology (the eagerness to describe 'the' spider and its web when in reality there are many variations in the webs of any one species), and many more shortcomings. But by far the strength of the book is Eberhard's ability to tell his readers what is needed on topics A to Z if we are to test hypotheses further. This willingness to lay out predictions that are derived from particular hypotheses on puzzling behaviors that have not been checked makes the book a gold mine for students of spider webs and indeed for all animal behaviorists."--John Alcock, Arizona State University, author of "Animal Behavior: An Evolutionary Approach" "There is only one comparable book on this topic that was published over thirty years ago, and it is not comprehensive. Eberhard's book is an extensive, encyclopedic review of what is known (and unknown) about spider webs today. It also provides many original observations from Eberhard himself."--Rainer F. Foelix, author of "Biology of Spiders" "Spider Webs provides both an authoritative and unique synthesis of research and still-to-be-addressed questions on spider web biology. There is no one better equipped to write a book on this subject than Eberhard. It will be a major contribution to the fields of ecology, evolution, and behavior, providing new information, new syntheses, and new insights on a broad range of topics."--Brent Opell, Virginia Tech "A comprehensive book on all aspects of spider webs is long overdue, and Eberhard is one of the few biologists--if not the only one--who has the knowledge, passion, and expertise to write such a book. Very thorough and detailed, Spider Webs is of great importance to specialists in its field, especially since it not only summarizes previously published studies, but also presents new ideas and views on structure, construction, function, and evolution of spider webs and their (potential) relevance to many different fields of biology."--Samuel Zschokke, University of Basel, Switzerland

    Innehållsförteckning

    • Chapter 1. Introduction1.1 Introduction1.2 A foreign world: life tied to silk lines1.3 A brief history of spider web studies1.4 Emphasis on behavior1.5 The scope of this book and tactics in presentation1.6 Evolutionary history and phylogeny1.7 Terminology and other procedural matters1.8 AcknowledgmentsChapter 2. The “hardware” of web-building spiders: morphology, silk, and behavior2.1. Introduction2.2 Silk glands and silk2.3 Spinnerets as high-precision instruments2.4 Leg morphology and behavior: grasping lines precisely and securely2.5 Cutting lines and recycling silk2.6 How spiders avoid adhering to their own webs: a mystery partly solved2.7 Central nervous system basis for web construction2.8 SummaryChapter 3. Functions of orb web designs3.1 Introduction3.2 Correcting common misconceptions about orb webs3.3 How orbs function3.4 SummaryChapter 4. Putting pieces together: tradeoffs and remaining puzzles4.1 Introduction4.2 “Optimal” orb designs: tradeoffs between functions are difficult to measure4.3 “Multiple trap” design: a new way to view orb webs4.4 Tensions and stresses4.5 Relative numbers of radii and sticky spiral loops4.6 Testing visibility and stopping functions: the extreme case of trunk orbs4.7 Correlations between spider size and orb design?4.8 Spider positions, attack behavior, and up-down asymmetries in orbs4.9 Remaining puzzles4.10 Non-orb webs4.11 Evolutionary responses by insects? A neglected aspect of prey capture4.12 Summary (including part of chapter 3)Chapter 5. The building behavior of non-orb weavers 5.1 Introduction5.2 Order of lines and other higher-level patterns5.3 Lower-level patterns: leg movements and manipulation of lines5.4 Stereotyped behavior in non-orb construction5.5 Adjustments to substrate-imposed constraints5.6 Managing swaths of fine lines5.7 SummaryBox 5.1 The funnel web diplurid Linothele macrotheliferaChapter 6. The building  behavior of orb-weavers6.1 Introduction6.2 Simplifications for smoother reading6.3 Behavior of two araneids6.4 Senility in orb construction: a new frontier?6.5 Detailed movements6.6 General patterns6.7 SummaryChapter 7. Cues directing web construction behavior7.1 Introduction7.2 Classifying the cues7.3 Cues for sticky spiral construction7.4 Temporary spiral7.5 Hub7.6 Stabilimentum construction7.7 Radii, frames, and anchor lines7.8 Early radii, and frames and anchor lines: determining web size, shape, and design7.9 To build or not to build: triggering orb construction and destruction7.10 Cues that trigger transitions between stages of orb construction7.11 Other stimuli that spiders can sense but that are not (yet) known to guide orb construction7.12 Hints of abilities: follow circular paths and sense radius lengths7.13 Effects of psychotropic drugs on orb construction7.14 Coordinating different adjustments to different cues7.15 The (limited) role of simulations in understanding orb construction behavior7.16 A missing link: translating cues into attachment sites7.17 Summarizing the behavioral challenges met by orb weavers7.18 Independence (?) of the spider’s responses7.19 Changes in responses to cues: learning and maturation7.20 Cues guiding the construction of non-orbs7.21 Summary   Chapter 8. Web ecology and website selection8.1 Introduction: what is and is not included8.2 Webs and ecological foraging theories8.3 What is enough? “Fast lane” and “slow lane” spiders8.4 Processes that produce habitat biases8.5 A general correlation between website selectivity and web design flexibility?8.6 Website tenacity, web durability, and recycling8.7 Web durability8.8 Limited by websites? Possible competition for prey and websites8.9 Problems in attempts to study cues that guide website choices8.10 Time of day: day webs vs. night webs8.11 SummaryChapter 9. Evolutionary patterns: an ancient success that produced high diversity and rampant convergence9.1 Introduction9.2 Patterns in the diversity of webs9.3 Consequences of the failure of the prey specialist hypothesis for understanding diversity and convergence9.4 What is a sheet web? Problems inherited from previous imprecision9.5 Mygalomorphs: similar patterns of diversity and rampant convergence in a different world9.6 Diversity of relations with insects9.7 Lack of miniaturization effects9.8 Paths not followed: alternative web forms in other animals9.9 Summary and a new synthesisBox 9.1 The most spectacular convergence of all: FeceniaBox 9.2 The most spectacular divergence of all: TheridiidaeBox 9.3 Sand castles: extreme modifications of Seothyra henscheli webs to shifting sandBox 9.4 Relation between web design and silk properties: stiff silk in Uroctea durandiChapter 10. Ontogeny, modularity, and the evolution of web building10.1 Introduction10.2 Web ontogeny and evolution10.3 Early web evolution10.4 The behavior patterns used to build early webs10.5 Evolution of later non-orb webs10.6 Inconsistent evolutionary trends in non-orb webs10.7 Diversity in non-orbs that results from behavioral stability10.8 The (probably) monophyletic origin of orb webs10.9 Evolutionary changes in orb designs10.10 “Post-orb” web evolution in Orbiculariae10.11 Coevolution between attack behavior and web design (and its lack)10.12 What didn’t happen, possible synapomorphies, and further puzzles10.13 Modularity and adaptive flexibility10.14 Modules and evolutionary transitions in web-building behavior10.15 SummaryReferencesIndex