Polar marine ecosystems are particularly vulnerable to the effects of climate change. Warming temperatures, freshening seawater, and disruption to sea-ice formation potentially all have cascading effects on food webs. New approaches are needed to better understand spatiotemporal interactions among biogeochemical processes at the base of Southern Ocean food webs. In marine systems, isoscapes (models of the spatial variation in the stable isotopic composition) of carbon and nitrogen have proven useful in identifying spatial variation in a range of biogeochemical processes, such as nutrient utilization by phytoplankton. Isoscapes provide a baseline for interpreting stable isotope compositions of higher trophic level animals in movement, migrat...
The large-scale spatial patterns and primary drivers of food web dynamics across seascapes can be in...
The large-scale spatial patterns and primary drivers of food web dynamics across seascapes can be in...
The large-scale spatial patterns and primary drivers of food web dynamics across seascapes can be in...
Polar marine ecosystems are particularly vulnerable to the effects of climate change. Warming temper...
Polar marine ecosystems are particularly vulnerable to the effects of climate change. Warming temper...
Polar marine ecosystems are particularly vulnerable to the effects of climate change. Warming temper...
Polar marine ecosystems are particularly vulnerable to the effects of climate change. Warming temper...
Polar marine ecosystems are particularly vulnerable to the effects of climate change. Warming temper...
Polar marine ecosystems are particularly vulnerable to the effects of climate change. Warming temper...
We produced carbon and nitrogen isoscapes across the entire Southern Ocean (>40°S) using surface par...
Spatial models of variation in the isotopic composition of structural nutrients across habitats (iso...
Antarctic marine ecosystems are spatially and temporally dynamic. Regional climate change is signifi...
Antarctic marine ecosystems are spatially and temporally dynamic. Regional climate change is signifi...
Antarctic marine ecosystems are spatially and temporally dynamic. Regional climate change is signifi...
The large-scale spatial patterns and primary drivers of food web dynamics across seascapes can be in...
The large-scale spatial patterns and primary drivers of food web dynamics across seascapes can be in...
The large-scale spatial patterns and primary drivers of food web dynamics across seascapes can be in...
The large-scale spatial patterns and primary drivers of food web dynamics across seascapes can be in...
Polar marine ecosystems are particularly vulnerable to the effects of climate change. Warming temper...
Polar marine ecosystems are particularly vulnerable to the effects of climate change. Warming temper...
Polar marine ecosystems are particularly vulnerable to the effects of climate change. Warming temper...
Polar marine ecosystems are particularly vulnerable to the effects of climate change. Warming temper...
Polar marine ecosystems are particularly vulnerable to the effects of climate change. Warming temper...
Polar marine ecosystems are particularly vulnerable to the effects of climate change. Warming temper...
We produced carbon and nitrogen isoscapes across the entire Southern Ocean (>40°S) using surface par...
Spatial models of variation in the isotopic composition of structural nutrients across habitats (iso...
Antarctic marine ecosystems are spatially and temporally dynamic. Regional climate change is signifi...
Antarctic marine ecosystems are spatially and temporally dynamic. Regional climate change is signifi...
Antarctic marine ecosystems are spatially and temporally dynamic. Regional climate change is signifi...
The large-scale spatial patterns and primary drivers of food web dynamics across seascapes can be in...
The large-scale spatial patterns and primary drivers of food web dynamics across seascapes can be in...
The large-scale spatial patterns and primary drivers of food web dynamics across seascapes can be in...
The large-scale spatial patterns and primary drivers of food web dynamics across seascapes can be in...