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      Ultra-fine grain landscape-scale quantification of dryland vegetation structure with drone-acquired structure-from-motion photogrammetry

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      Remote Sensing of Environment
      Elsevier BV

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          Biological feedbacks in global desertification.

          Studies of ecosystem processes on the Jornada Experimental Range in southern New Mexico suggest that longterm grazing of semiarid grasslands leads to an increase in the spatial and temporal heterogeneity of water, nitrogen, and other soil resources. Heterogeneity of soil resources promotes invasion by desert shrubs, which leads to a further localization of soil resources under shrub canopies. In the barren area between shrubs, soil fertility is lost by erosion and gaseous emissions. This positive feedback leads to the desertification of formerly productive land in southern New Mexico and in other regions, such as the Sahel. Future desertification is likely to be exacerbated by global climate warming and to cause significant changes in global biogeochemical cycles.
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            Monitoring vegetation phenology using MODIS

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              Lidar Remote Sensing for Ecosystem Studies

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                Author and article information

                Journal
                Remote Sensing of Environment
                Remote Sensing of Environment
                Elsevier BV
                00344257
                September 2016
                September 2016
                : 183
                :
                : 129-143
                Article
                10.1016/j.rse.2016.05.019
                f210a386-0cf4-4148-901c-457bcaad9058
                © 2016
                History

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