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A Continuous Satellite-Derived Measure of Global Terrestrial Primary Production

BioScience · 2004 · Vol. 54(6) · pp. 547–547
Steven W. RunningRamakrishna NemaniFaith Ann HeinschMaosheng ZhaoMatt C. ReevesHirofumi Hashimoto

Abstract

Until recently, continuous monitoring of global vegetation productivity has not been possible because of technological limitations. This article introduces a new satellite-driven monitor of the global biosphere that regularly computes daily gross primary production (GPP) and annual net primary production (NPP) at 1-kilometer (km) resolution over 109,782,756 km 2 of vegetated land surface. We summarize the history of global NPP science, as well as the derivation of this calculation, and current data production activity. The first data on NPP from the EOS (Earth Observing System) MODIS (Moderate Resolution Imaging Spectroradiometer) sensor are presented with different types of validation. We offer examples of how this new type of data set can serve ecological science, land management, and environmental policy. To enhance the use of these data by nonspecialists, we are now producing monthly anomaly maps for GPP and annual NPP that compare the current value with an 18-year average value for each pixel, clearly identifying regions where vegetation growth is higher or lower than normal.

Remote Sensing in AgricultureSoil Geostatistics and MappingRemote Sensing and Land UsePrimary productionBiosphereModerate-resolution imaging spectroradiometerEnvironmental scienceSatelliteVegetation (pathology)Anomaly (physics)Remote sensingSatellite imageryProduction (economics)

Funding

  • National Aeronautics and Space Administration
  • University of Montana
  • McMaster University
  • Commonwealth Scientific and Industrial Research Organisation
  • Goddard Space Flight Center
Citations
2,381
FWCI
39.42
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References
63
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References
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Science · 2000 · 9,125 citations
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