Area of research
Global and Planetary Change · Nature and Landscape Conservation
Research interest
Research interests include Plant Water Relations and Carbon Dynamics, Forest ecology and management, Land Use and Ecosystem Services, and Fire effects on ecosystems.
A Climate BioStress Sentinel System: Identifying climate impacts from the genome to the urbanized biosphere
Remote Sensing and GIS in Natural Resource Management: Comparing Tools and Emphasizing the Importance of In-Situ Data
Urbanization exacerbates climate sensitivity of eastern <scp>U</scp>nited <scp>S</scp>tates broadleaf trees
Diverging patterns at the forest edge: Soil respiration dynamics of fragmented forests in urban and rural areas
Quantification of Urban Forest and Grassland Carbon Fluxes Using Field Measurements and a Satellite‐Based Model in Washington DC/Baltimore Area
Solar‐Induced Fluorescence Does Not Track Photosynthetic Carbon Assimilation Following Induced Stomatal Closure
Accounting for Training Data Error in Machine Learning Applied to Earth Observations
Urbanization and fragmentation mediate temperate forest carbon cycle response to climate
Transpiration of Dominant Tree Species Varies in Response to Projected Changes in Climate: Implications for Composition and Water Balance of Temperate Forest Ecosystems
Current and future biomass carbon uptake in Boston's urban forest
Piecing together the fragments: elucidating edge effects on forest carbon dynamics
Declines in northern forest tree growth following snowpack decline and soil freezing
Growing season warming and winter freeze–thaw cycles reduce root nitrogen uptake capacity and increase soil solution nitrogen in a northern forest ecosystem
Increased soil respiration in response to experimentally reduced snow cover and increased soil freezing in a temperate deciduous forest
Winter soil freeze-thaw cycles lead to reductions in soil microbial biomass and activity not compensated for by soil warming
Climate Change Across Seasons Experiment (CCASE): A new method for simulating future climate in seasonally snow-covered ecosystems
Temperature response of soil respiration largely unaltered with experimental warming
Edge effects enhance carbon uptake and its vulnerability to climate change in temperate broadleaf forests
Soil respiration contributes substantially to urban carbon fluxes in the greater Boston area
Beyond arctic and alpine: the influence of winter climate on temperate ecosystems
Assessing the global warming potential of human settlement expansion in a mesic temperate landscape from 2005 to 2050
Tree Productivity Enhanced with Conversion from Forest to Urban Land Covers
Reduced Winter Snowpack and Greater Soil Frost Reduce Live Root Biomass and Stimulate Radial Growth and Stem Respiration of Red Maple (Acer rubrum) Trees in a Mixed-Hardwood Forest
Soil Freezing Effects on Sources of Nitrogen and Carbon Leached During Snowmelt