The Normalized Difference Vegetation Index (NDVI): unforeseen successes in animal ecology
Нормализованный разностный вегетационный индекс (NDVI): неожиданные успехи в экологии животных
2010-09-22
SCID: 54.1/sx3jbayp
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Normalized Difference Vegetation Indexanimal ecologyherbivore distributionpopulation dynamicsvegetation phenology
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Abstract (AI)
This review highlights the latest developments associated with the use of the Normalized Difference Vegetation Index (NDVI) in ecology. Over the last decade, the NDVI has proven extremely useful in predicting herbivore and non-herbivore distribution, abundance and life history traits in space and time. Due to the continuous nature of NDVI since mid-1981, the relative importance of different temporal and spatial lags on population performance can be assessed, widening our understanding of population dynamics. Previously thought to be most useful in temperate environments, the utility of this satellite-derived index has been demonstrated even in sparsely vegetated areas. Climate models can be used to reconstruct historical patterns in vegetation dynamics in addition to anticipating the effects of future environmental change on biodiversity. NDVI has thus been established as a crucial tool for assessing past and future population and biodiversity consequences of change in climate, vegetation phenology and primary productivity. © Inter-Research 2011.
Key Findings
1
Although initially considered most useful in temperate environments, NDVI also performs effectively in sparsely vegetated areas.
2
Combining NDVI with climate models supports reconstruction of historical vegetation dynamics and projection of future environmental-change effects on biodiversity.
3
Its continuous satellite record since mid-1981 enables assessment of how different temporal and spatial vegetation lags influence population performance and dynamics.
4
NDVI has become highly useful for predicting herbivore and non-herbivore distributions, abundances, and life-history traits across space and time.
5
NDVI is an important tool for evaluating population and biodiversity consequences of changes in climate, vegetation phenology, and primary productivity.
Research Object
Animal populations and biodiversity in relation to vegetation dynamics and climate
Research Subject
Spatial and temporal patterns in animal distribution, abundance, life-history traits, population dynamics, and biodiversity responses to vegetation phenology, primary productivity, and climate change
Publication Details
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2010-09-22
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