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Titlebook: Mapping the Diversity of Nature; Ronald I. Miller Book 1994 Springer Science+Business Media Dordrecht 1994 GIS.Geoinformationssysteme.biod

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书目名称Mapping the Diversity of Nature
编辑Ronald I. Miller
视频video
图书封面Titlebook: Mapping the Diversity of Nature;  Ronald I. Miller Book 1994 Springer Science+Business Media Dordrecht 1994 GIS.Geoinformationssysteme.biod
描述The diversity of life is displayed by a diversity the biodiversity elements. These unique of structural and functional elements. Many approaches are usually tailored to the region of aspects of this diversity are critical for main­ the world where the scientists‘ work is focused. taining the healthy functioning of biological This book presents accounts of many tech­ systems both within short and long time scales. niques that are currently being used in different Some highly diverse features of nature arise parts of the globe by conservation scientists. simply from the heterogeneous patterns that Many different techniques are necessary to comprise the web of nature. Many of these handle the differences in data types and data features contribute to the beauty and quality of coverages that occur across the globe. Also, a life. Humans do not yet understand enough variety of mapping approaches are needed about the complexity of nature to distinguish today to strengthen the many diverse critical those elements that act to support natural conservation objectives. These objectives include vitality from those elements that contribute the identification of the distribution patterns exclusive
出版日期Book 1994
关键词GIS; Geoinformationssysteme; biodiversity; development; organization; remote sensing/photogrammetry
版次1
doihttps://doi.org/10.1007/978-94-011-0719-8
isbn_softcover978-94-010-4310-6
isbn_ebook978-94-011-0719-8
copyrightSpringer Science+Business Media Dordrecht 1994
The information of publication is updating

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Mapping the elements of biodiversity: The rare species of Madagascarentury (Wilson, 1988; May, 1992). Techniques by which to identify these areas more precisely are urgently needed (Sullivan, 1992). Mapping these locations can assist governments and development agencies in integrating biodiversity conservation into their programs.
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Hierarchical representations of species distributions using maps, images and sighting datatraditional dot maps, grids or line drawings used until very recently to show species ranges are being replaced by applications of models to maps of habitat variables (e.g. Walker, 1990; Scott ., 1993). Models of ranges of populations or metapopulations now take explicit account of spatial effects,
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Remote-sensing assessment of tropical habitat availability for a nearctic migrant: The wood thrush deciduous and mixed woodlands (Phillips, 1991). During the north temperate winter months (i.e. November-March) the species is found in the wet lowlands of Middle America from southern Mexico to Panama (Rappole .., 1983; Phillips, 1991) (Figure 6.1).
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Mapping and GIS analysis of the global distribution of coral reef fishes on an equal-area gridand phyla) reefs are perhaps the most diverse ecosystems in the world and they support a vast, morphologically diverse and colorful array of species. An estimated 4000 species of fishes, approximately 25% of the marine fish species, inhabit coral reefs (McAllister, 1991a). Despite this high biodiver
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