The elevated surface and air temperatures of urban environments can influence the timing of vegetation growth dynamics within and across city boundaries. We examined patterns of land surface phenology (LSP) throughout the U.S. Great Plains region, which contains diverse metropolitan areas embedded within a predominately agricultural landscape. We assembled a time series (2002–2012) of Moderate Resolution Imaging Spectroradiometer (MODIS) Nadir BRDF-Adjusted Reflectance (NBAR) data and land surface temperature data at 500 m and 1000 m spatial resolution, respectively. We derived measures of the vegetated land surface and the thermal regime of the growing season at 8-day intervals using the Normalized Difference Vegetation Index (NDVI) and Ac...
Satellite observations show that the surface urban heat island intensity (SUHII) has been increasing...
Mountainous regions experience complex phenological behavior along climatic, vegetational and topogr...
Urbanization-associated land use and land cover (LULC) changes lead to modifications of surface micr...
The elevated surface and air temperatures of urban environments can influence the timing of vegetati...
Urban areas alter local atmospheric conditions by modifying surface albedo and consequently the surf...
Urbanization increases the impacts of cities on the natural environment, in part by altering local e...
Understanding the effects that the Urban Heat Island (UHI) has on plant phenology is important in pr...
Monitoring land surface phenology plays a fundamental role in quantifying the impact of climate chan...
Urbanization is one of the major environmental challenges facing the world today. One of its particu...
In terms of the space cities occupy, urbanization appears as a minor land transformation. However, i...
Impervious surface area (ISA) from the National Geophysical Data Center (NGDC) and land surface temp...
The urban heat island effect is commonly defined as the thermal differences between cooler rural and...
Abstract This paper intended to examine the seasonal variations in the relationship between landscap...
Land surface phenology (LSP), the study of the seasonal vegetation dynamics from remote sensing imag...
Urbanization-induced phenological shifts may provide evidence on how vegetation will respond to glob...
Satellite observations show that the surface urban heat island intensity (SUHII) has been increasing...
Mountainous regions experience complex phenological behavior along climatic, vegetational and topogr...
Urbanization-associated land use and land cover (LULC) changes lead to modifications of surface micr...
The elevated surface and air temperatures of urban environments can influence the timing of vegetati...
Urban areas alter local atmospheric conditions by modifying surface albedo and consequently the surf...
Urbanization increases the impacts of cities on the natural environment, in part by altering local e...
Understanding the effects that the Urban Heat Island (UHI) has on plant phenology is important in pr...
Monitoring land surface phenology plays a fundamental role in quantifying the impact of climate chan...
Urbanization is one of the major environmental challenges facing the world today. One of its particu...
In terms of the space cities occupy, urbanization appears as a minor land transformation. However, i...
Impervious surface area (ISA) from the National Geophysical Data Center (NGDC) and land surface temp...
The urban heat island effect is commonly defined as the thermal differences between cooler rural and...
Abstract This paper intended to examine the seasonal variations in the relationship between landscap...
Land surface phenology (LSP), the study of the seasonal vegetation dynamics from remote sensing imag...
Urbanization-induced phenological shifts may provide evidence on how vegetation will respond to glob...
Satellite observations show that the surface urban heat island intensity (SUHII) has been increasing...
Mountainous regions experience complex phenological behavior along climatic, vegetational and topogr...
Urbanization-associated land use and land cover (LULC) changes lead to modifications of surface micr...