5 results match your criteria: "National Research University Tashkent Institute of Irrigation and Agricultural Mechanization Engineers[Affiliation]"

Quantifying key vegetation parameters from Sentinel-3 and MODIS over the eastern Eurasian steppe with a Bayesian geostatistical model.

Sci Total Environ

January 2024

State Key Laboratory of Efficient Utilization of Arid and Semi-arid Arable Land in Northern China, National Hulunber Grassland Ecosystem Observation and Research Station, Institute of Agricultural Resources and Regional Planning, Chinese Academy of Agricultural Sciences, Beijing 100081, China. Electronic address:

Article Synopsis
  • - The study focuses on using the Ocean and Land Color Imager (OLCI) on Sentinel-3 to accurately estimate grassland leaf area index (LAI), fractional vegetation cover (FVC), and aboveground biomass (AGB), comparing its performance to MODIS data.
  • - Utilizing a Bayesian spatial model (INLA-SPDE) to account for spatial correlations enhances prediction accuracy, with S3 OLCI displaying superior results over MODIS—reducing errors in LAI, FVC, and AGB predictions significantly.
  • - The analysis highlights the effectiveness of red edge bands in improving estimation accuracy, as well as the INLA-SPDE model outperforming other techniques like random forests in terms of bias and alignment with
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Livestock-grassland interactions are among the most important relationships in grazed grassland ecosystems, where herbivores play a crucial role in plant community and ecosystem functions. However, previous studies primarily have focused on the responses of grasslands to grazing, with few focussing on the effects of livestock behaviour that in turn would influence livestock intake and primary and secondary productivity. Through a 2-year grazing intensity experiment with cattle in Eurasian steppe ecosystem, global positioning system (GPS) collars were used to monitor animal movements, where animal locations were recorded at 10-min intervals during the growing season.

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Bromination of the furanoquinoline alkaloid haplophyllidine by molecular bromine and -bromosuccinimide was accompanied by intramolecular cyclization to form mixtures of new compounds containing additional penta-, hexa-, and spirocyclic rings incorporating the prenyl group of haplophyllidine. The structures and absolute configurations of the chiral centers of all four bromo-derivatives were elucidated using a combination of NMR spectroscopic methods and X-ray crystal structure analyses.

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