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Avoiding coral reef functional collapse requires local and global action
Emma V. Kennedy
, Chris T. Perry
, Paul R. Halloran
, Roberto Iglesias-Prieto
, Christine H.L. Schönberg
, Max Wisshak
, Armin U. Form
, Juan P. Carricart-Ganivet
,
Maoz Fine
, C. Mark Eakin
, Peter J. Mumby
*
*
Corresponding author for this work
Research output
:
Contribution to journal
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Article
›
peer-review
267
Scopus citations
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Keyphrases
Coral Reefs
100%
Global Action
100%
Local Action
100%
Carbonate Budgets
100%
Ecosystem Services
66%
Coral
66%
Greenhouse Gas Emissions
66%
Greenhouse Gasses Emission
66%
Climate Models
33%
Climate Change
33%
Ecosystem Function
33%
Conservation Actions
33%
3D Structure
33%
Reef Structure
33%
Overfishing
33%
Pollution
33%
Dual Effect
33%
Global-local
33%
Caribbean
33%
Ecological Model
33%
Later Generations
33%
Disintegration
33%
Fisheries
33%
Sea Temperature
33%
Local Conservation
33%
Business as Usual
33%
Local Management
33%
Anthropogenic Threats
33%
Ocean Acidification
33%
Rising Seas
33%
Coral Growth
33%
Structural Growth
33%
Reef Carbonates
33%
Carbonate Balance
33%
Carbonate Accumulation
33%
Ecological Perturbation
33%
Bioerosion
33%
Caribbean Reefs
33%
No-take Marine Reserves
33%
Low-carbon Economy
33%
Earth and Planetary Sciences
Coral Reef
100%
Reef
100%
Ecosystem Service
33%
Greenhouse Gas Emission
33%
Caribbean
33%
Climate Modeling
16%
Climate Change
16%
Ecosystem Function
16%
Overfishing
16%
Ocean Acidification
16%
Marine Reserve
16%
Bioerosion
16%