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Titlebook: Vegetation Dynamics & Global Change; Allen M. Solomon,Herman H. Shugart Book 1993 International Institute for Applied Systems Analysis 199

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I. Colin Prentice,Robert A. Monserud,Thomas M. Smith,William R. Emanuelg proliferation of adjacent perivascular cells. If injury is sufficiently extensive, platelets can aggregate, degranulate and release PDGF. The growth factor deposited in these sites is chemotactic and mitogenic for vascular smooth muscle cells. The smooth muscle cells may also be activated to secre
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Monitoring Vegetation Change Using Satellite Data provide an accurate means of detecting, quantifying, mapping, and monitoring change in vegetation on local, regional, and global scales. Change at different scales in both vegetation kind (vegetation types, species associations, etc.) and vegetation condition (state of health, degree of deforestati
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Rapid Simulations of Vegetation Stand Dynamics with Mixed Life-Formsture of life-forms characteristic of most plant communities. (However, see .; and .) Another limitation of gap models for global simulation purposes is that they appear to include an excessive amount of detail; for example, vegetation patches are described in terms of explicit characteristics of all
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d Terrestrial Ecosystems Core Project of the IGBP suggests we were successful in that aim. The objective was implemented by our initiation of a mathematical model of global vegetation, including agriculture, as defined by the forces which control and change vegetation. The model was to illustrate the geograph978-1-4613-6217-3978-1-4615-2816-6
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Mark R. Fultonrientation, particularly for those who attended the Workshop - Conference, a Summary Table of all Sessions of Proffered Papers designated as Chapters in this bo978-1-4613-4222-9978-1-4613-4220-5Series ISSN 0065-2598 Series E-ISSN 2214-8019
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