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The biodiversity–ecosystem service relationship in urban areas: a quantitative review. Oikos 125, 761-768 (2016).
. Comparing the effects of climate and land use on surface water quality using future watershed scenarios. Science of the Total Environment 693, 133484 (2019).
Continuous separation of land use and climate effects on the past and future water balance. Journal of Hydrology 565, 106-122 (2018).
Current and historical land use influence soil‐based ecosystem services in an urban landscape. Ecological Applications (2018). doi:10.1002/eap.1689
. Drought effects on US maize and soybean production: spatiotemporal patterns and historical changes. Environmental Research Letters 11, 094021 (2016).
. Is groundwater recharge always serving us well? Water supply provisioning, crop production, and flood attenuation in conflict in Wisconsin, USA. Ecosystem Services 21, Part A, 153 - 165 (2016).
. Historical foundations and future directions in macrosystems ecology. Ecology Letters (2016). doi:10.1111/ele.12717
How do land-use legacies affect ecosystem services in United States cultural landscapes?. Landscape Ecology 1 - 14 (2017). doi:10.1007/s10980-017-0545-4
. The Influence of Legacy P on Lake Water Quality in a Midwestern Agricultural Watershed. Ecosystems 1 - 15 (2017). doi:10.1007/s10021-017-0125-0
Invasive species triggers a massive loss of ecosystem services through a trophic cascade. Proceedings of the National Academy of Sciences (2016). doi:10.1073/pnas.1600366113
. Management of minimum lake levels and impacts on flood mitigation: A case study of the Yahara Watershed, Wisconsin, USA. Journal of Hydrology 577, (2019).
Nonlinear groundwater influence on biophysical indicators of ecosystem services. Nature Sustainability (2019). doi:10.1038/s41893-019-0278-2
Quantifying indirect groundwater-mediated effects of urbanization on agroecosystem productivity using MODFLOW-AgroIBIS (MAGI), a complete critical zone model. Ecological Modeling 359, 201 - 219 (2017).
. Scale-dependent interactions between tree canopy cover and impervious surfaces reduce daytime urban heat during summer. Proceedings of the National Academy of Sciences 201817561 (2019). doi:10.1073/pnas.1817561116
. Untangling the effects of shallow groundwater and soil texture as drivers of subfield-scale yield variability. Water Resources Research (2015). doi:10.1002/2015WR017522
. Urban heat island impacts on plant phenology: intra-urban variability and response to land cover. Environmental Research Letters 11, 054023 (2016).
Urban heat island-induced increases in evapotranspirative demand. Geophysical Research Letters (2017). doi:10.1002/2016GL072190
. Using evapotranspiration to assess drought sensitivity on a subfield scale with HRMET, a high resolution surface energy balance model. Agricultural and Forest Meteorology 197, 91-102 (2014).
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