The semi-arid grasslands in Inner Mongolia (IM) are under increasing stress owing to climate change and rapid socio-economic development in the recent past. We investigated changes in land cover/land use and landscape structure between 1992 and 2004 through the analysis of AVHRR and MODIS derived land cover data. The scale of analysis included the regional level (i.e. the whole of IM) as well as the level of the dominant biomes (i.e. the grassland and desert). We quantified proportional change, rate of change and the changes in class-level landscape metrics using the landscape structure analysis program FRAGSTATS. The dominant land cover types, grassland and barren, 0.47 and 0.27 million km2, respectively, have increased proportionally. Cro...
Mapping large-scale spatial patterns of grassland community properties in the Inner Mongolia Autonom...
Desertification and the expansion of deserts are regarded as a major threat to human livelihoods and...
Fractional Vegetation Cover (FVC) is one of the most important variables in monitoring the changes o...
Understanding the spatiotemporal changes in landscape patterns and their driving factors in Inner Mo...
The changes in land cover patterns in the Mongolian Plateau can reveal the regional status of sustai...
Land-use and land-cover changes have important effects on ecology, human systems, the environment, a...
Land-use and land-cover changes have important effects on ecology, human systems, the environment, a...
© 2019, Saudi Society for Geosciences. Mongolia is in the hinterland of the Mongolian Plateau, which...
Land use/cover change (LUCC) is one of the major environmental changes and has become a hot topic in...
Understanding the causes and consequences of land use and land cover change in drylands is crucial f...
Based on land-use data of 1985 and 2000 in Hetao Irrigation District, land use change and landscape ...
This study investigates the regional differences in the land use change since 2000 in Inner Mongolia...
Landsat TM/ETM+ sensor data has proven to be a highly effective data source for vegetation and land ...
Temperate and semiarid grasslands comprise 80% of the land area on the Mongolian Plateau and environ...
Historical and recent land degradation has been caused by human activities in semi-arid Kerqin Sandy...
Mapping large-scale spatial patterns of grassland community properties in the Inner Mongolia Autonom...
Desertification and the expansion of deserts are regarded as a major threat to human livelihoods and...
Fractional Vegetation Cover (FVC) is one of the most important variables in monitoring the changes o...
Understanding the spatiotemporal changes in landscape patterns and their driving factors in Inner Mo...
The changes in land cover patterns in the Mongolian Plateau can reveal the regional status of sustai...
Land-use and land-cover changes have important effects on ecology, human systems, the environment, a...
Land-use and land-cover changes have important effects on ecology, human systems, the environment, a...
© 2019, Saudi Society for Geosciences. Mongolia is in the hinterland of the Mongolian Plateau, which...
Land use/cover change (LUCC) is one of the major environmental changes and has become a hot topic in...
Understanding the causes and consequences of land use and land cover change in drylands is crucial f...
Based on land-use data of 1985 and 2000 in Hetao Irrigation District, land use change and landscape ...
This study investigates the regional differences in the land use change since 2000 in Inner Mongolia...
Landsat TM/ETM+ sensor data has proven to be a highly effective data source for vegetation and land ...
Temperate and semiarid grasslands comprise 80% of the land area on the Mongolian Plateau and environ...
Historical and recent land degradation has been caused by human activities in semi-arid Kerqin Sandy...
Mapping large-scale spatial patterns of grassland community properties in the Inner Mongolia Autonom...
Desertification and the expansion of deserts are regarded as a major threat to human livelihoods and...
Fractional Vegetation Cover (FVC) is one of the most important variables in monitoring the changes o...