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Titlebook: Analytical Biogeography; An Integrated Approa Alan A. Myers,Paul S. Giller Book 1988 Springer Science+Business Media Dordrecht 1988 biogeog

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期刊全称Analytical Biogeography
期刊简称An Integrated Approa
影响因子2023Alan A. Myers,Paul S. Giller
视频videohttp://file.papertrans.cn/157/156571/156571.mp4
图书封面Titlebook: Analytical Biogeography; An Integrated Approa Alan A. Myers,Paul S. Giller Book 1988 Springer Science+Business Media Dordrecht 1988 biogeog
影响因子Biogeography may be defined simply as the study of the geographical distribution of organisms, but this simple definition hides the great complexity of the subject. Biogeography transcends classical subject areas and involves a range of scientific disciplines that includes geogra­ phy, geology and biology. Not surprisingly, therefore, it means rather different things to different people. Historically, the study of biogeogra­ phy has been concentrated into compartments at separate points along a spatio-temporal gradient. At one end of the gradient, ecological biogeography is concerned with ecological processes occurring over short temporal and small spatial scales, whilst at the other end, historical biogeography is concerned with evolutionary processes over millions of years on a large, often global scale. Between these end points lies a third major compartment concerned with the profound effects of Pleistocene glaciations and how these have affected the distribution of recent organisms. Within each of these compartments along the scale gradient, a large number of theories, hypotheses and models have been proposed in an attempt to explain the present and past biotic distribution pa
Pindex Book 1988
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Introductione can proceed to the study of the more intractible problems of how they got there. However, to quote from MacArthur (1972), “To do science is to search for repeated patterns, not simply to accumulate facts.” The existence of repeated non-random patterns in species distributions implies the operation
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Biogeographic patterns: a perceptual overviewthe aims, approaches and methods of biogeography. The need for such a discussion reflects the fact that biogeography lacks cohesion and consistency (Chapter 1). There is too little sound knowledge of biogeographical processes, reflected by disparity about what can be assumed or should be investigate
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Species diversityal variation in the richness of plant and animal species. A simple explanation eluded Wallace, Bates, Darwin, Humboldt and the other great naturalists of the last century. In the intervening hundred years, biogeographers, ecologists, and palaeontologists have identified many other spatial and tempor
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Relationship of species number to area, distance and other variablese centre of distribution and the spread around the centre are different for each species, as can readily be seen in any atlas of distribution. The consequence of this is that, again in general, larger areas will contain more species than smaller areas. However, the species—area relationship is not s
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Extinctionecies that have existed on Earth most are now extinct, and about 250 000 extinctions are known from the fossil record (Raup and Sepkoski, 1984; Raup, 1986). Among fossilizable marine organisms about 72% of the families (2 400 of 3 300) and 78% of the genera (9 250 of 11 800) are known to be extinct
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