Area of research
Environmental Engineering · Global and Planetary Change
Research interest
Research interests include Environmental science, Lidar, Remote sensing, Vegetation (pathology), Biomass (ecology), and Forest inventory.
A carbon monitoring system for mapping regional, annual aboveground biomass across the northwestern USA
Monitoring pinyon-juniper cover and aboveground biomass across the Great Basin
Imputation of Individual Longleaf Pine (<i>Pinus palustris</i>Mill.) Tree Attributes from Field and LiDAR Data
Continuous Wavelet Analysis for Spectroscopic Determination of Subsurface Moisture and Water-Table Height in Northern Peatland Ecosystems
Development of Height-Volume Relationships in Second Growth<i>Abies grandis</i>for Use with Aerial LiDAR
Remote sensing the vulnerability of vegetation in natural terrestrial ecosystems
Spectral detection of near-surface moisture content and water-table position in northern peatland ecosystems
An Accuracy Assessment of Tree Detection Algorithms in Juniper Woodlands
Remote sensing of vegetation structure, function, and condition: Special issue
Saving sage-grouse from the trees: A proactive solution to reducing a key threat to a candidate species
Quantifying spatial distribution of snow depth errors from LiDAR using Random Forest
Quantification of fuel moisture effects on biomass consumed derived from fire radiative energy retrievals
A Methodology to Characterize Vertical Accuracies in Lidar-derived Products at Landscape Scales
Quantifying aboveground forest carbon pools and fluxes from repeat LiDAR surveys
Investigating the influence of LiDAR ground surface errors on the utility of derived forest inventories