Area of research
Oceanography · Ecological Modeling
Research interest
Research interests include Species Distribution and Climate Change, Marine and coastal plant biology, Physiological and biochemical adaptations, and Marine Biology and Ecology Research.
Harnessing ecological theory to enhance ecosystem restoration
Toward a More Dynamic Metabolic Theory of Ecology to Predict Climate Change Effects on Biological Systems
Temperature impacts on dengue incidence are nonlinear and mediated by climatic and socioeconomic factors: A meta-analysis
A Latitudinal Cline in the Taxonomic Structure of Eelgrass Epifaunal Communities is Associated With Plant Genetic Diversity
Expert perspectives on global biodiversity loss and its drivers and impacts on people
A Pleistocene legacy structures variation in modern seagrass ecosystems
The biogeography of community assembly: latitude and predation drive variation in community trait distribution in a guild of epifaunal crustaceans
Grand challenges in biodiversity–ecosystem functioning research in the era of science–policy platforms require explicit consideration of feedbacks
Ecological Synthesis and Its Role in Advancing Knowledge
Function and functional redundancy in microbial systems
Energy Flux: The Link between Multitrophic Biodiversity and Ecosystem Functioning
Blue Carbon Storage Capacity of Temperate Eelgrass (<scp><i>Zostera marina</i></scp>) Meadows
Linking the influence and dependence of people on biodiversity across scales
A general biodiversity–function relationship is mediated by trophic level
The Body Size Dependence of Trophic Cascades
Consumer–plant interaction strength: importance of body size, density and metabolic biomass
Increased temperature variation poses a greater risk to species than climate warming
Geographical limits to species-range shifts are suggested by climate velocity
A bioenergetic framework for the temperature dependence of trophic interactions
Global imprint of climate change on marine life
Linking Biodiversity and Ecosystem Services: Current Uncertainties and the Necessary Next Steps
A global synthesis reveals biodiversity loss as a major driver of ecosystem change
Advances in global change research require open science by individual researchers
Moving beyond the fished or farmed dichotomy