Colleen M Petrik
Biographic Data
| ID | 6225677 |
|---|---|
| NAME | Colleen M Petrik |
| GIVEN NAMES | Colleen M |
| FAMILY NAME | Petrik |
| SIGNATURE | PETRIK C M |
| AFFILIATIONS | Scripps Laboratories (United States) |
| ORCID | 0000-0003-3253-0455 |
| VERIFIED | Yes |
| TOTAL WORKS | 2 |
| TOTAL CITATIONS | 0 |
| AUTHOR COUNT | 2 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2026 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 0 |
Sustainable Blue
Improved decision-making capabilities are essential for sustaining fisheries, particularly as fisheries managers must consider the complex interdependencies among fishing efforts, changes in ocean physics and biogeochemistry, and decision-making processes. These considerations are critical for maximizing the long-term benefits of marine resources in a rapidly changing climate. Current decision-support tools for fisheries management often fail to …
The High Value of Climate Mitigation in Limiting Global Fish Biomass Losses to the year 23
It is widely understood that future climate change will have large deleterious impacts on marine ecosystems. Large synthesis efforts conducted to date by FishMIP with higher trophic level (HTL) models have shown that under high emissions scenarios, future fish biomass losses of the order of 20% can be expected by 2100. However, the impact of anthropogenic climate change beyond 2100 remains largely unexplored, even though policy choices made now w…
No prominent works on this page.
Sustainable Blue
Improved decision-making capabilities are essential for sustaining fisheries, particularly as fisheries managers must consider the complex interdependencies among fishing efforts, changes in ocean physics and biogeochemistry, and decision-making processes. These considerations are critical for maximizing the long-term benefits of marine resources in a rapidly changing climate. Current decision-support tools for fisheries management often fail to …
The High Value of Climate Mitigation in Limiting Global Fish Biomass Losses to the year 23
It is widely understood that future climate change will have large deleterious impacts on marine ecosystems. Large synthesis efforts conducted to date by FishMIP with higher trophic level (HTL) models have shown that under high emissions scenarios, future fish biomass losses of the order of 20% can be expected by 2100. However, the impact of anthropogenic climate change beyond 2100 remains largely unexplored, even though policy choices made now w…
Coastal and Marine Management (2 works) · Citizen journalism (1 works) · Climate change (1 works) · Climate change mitigation (1 works) · Climate model (1 works) · Decision support system (1 works) · Ecosystem (1 works) · Fish (1 works) · Fisheries management (1 works) · Geographic Information Systems Studies (1 works)