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A framework for vulnerability analysis in sustainability science

Proceedings of the National Academy of Sciences · 2003 · Vol. 100(14) · pp. 8074–8079
B. L. TurnerRoger E. KaspersonPamela A. MatsonJames J. McCarthyRobert W. CorellLindsey ChristensenNoelle EckleyJeanne X. KaspersonAmy LuersMarybeth Long MartelloColin PolskyAlexander PulsipherA. Schiller

Abstract

Global environmental change and sustainability science increasingly recognize the need to address the consequences of changes taking place in the structure and function of the biosphere. These changes raise questions such as: Who and what are vulnerable to the multiple environmental changes underway, and where? Research demonstrates that vulnerability is registered not by exposure to hazards (perturbations and stresses) alone but also resides in the sensitivity and resilience of the system experiencing such hazards. This recognition requires revisions and enlargements in the basic design of vulnerability assessments, including the capacity to treat coupled human-environment systems and those linkages within and without the systems that affect their vulnerability. A vulnerability framework for the assessment of coupled human-environment systems is presented.

Climate change impacts on agricultureSustainability and Climate Change GovernanceDisaster Management and ResilienceVulnerability (computing)Resilience (materials science)SustainabilityVulnerability assessmentBiosphereFunction (biology)Risk analysis (engineering)Environmental resource managementEnvironmental planningAdaptive capacity

MeSH terms

Adaptation, PsychologicalAnimalsConservation of Natural ResourcesDecision MakingDisastersHumansModels, TheoreticalSafetyStress, PhysiologicalSafety ManagementEcosystemVulnerable Populations

Funding

  • National Science Foundation
  • Stockholm Environment Institute
  • National Oceanic and Atmospheric Administration
Citations
4,206
FWCI
78.43
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References
48
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100%
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