Scinovex
articleTop 1% cited

Command and Control and the Pathology of Natural Resource Management

Conservation Biology · 1996 · Vol. 10(2) · pp. 328–337
C. S. HollingGary K. Meffe

Abstract

As the human population grows and natural resources decline, there is pressure to apply increasing levels of top‐down, command‐and‐control management to natural resources. This is manifested in attempts to control ecosystems and in socioeconomic institutions that respond to erratic or surprising ecosystem behavior with more control. Command and control, however, usually results in unforeseen consequences for both natural ecosystems and human welfare in the form of collapsing resources, social and economic strife, and losses of biological diversity. We describe the “pathology of natural resource management,” defined as a loss of system resilience when the range of natural variation in the system is reduced encapsulates the unsustainable environmental, social, and economic outcomes of command‐and‐control resource management. If natural levels of variation in system behavior are reduced through command‐and‐control, then the system becomes less resilient to external perturbations, resulting in crises and surprises. We provide several examples of this pathology in management. An ultimate pathology emerges when resource management agencies, through initial success with command and control, lose sight of their original purposes, eliminate research and monitoring, and focus on efficiency of control. They then become isolated from the managed systems and inflexible in structure. Simultaneously, through overcapitalization, society becomes dependent upon command and control, demands it in greater intensity, and ignores the underlying ecological change or collapse that is developing. Solutions to this pathology cannot come from further command and control (regulations) but must come from innovative approaches involving incentives leading to more resilient ecosystems, more flexible agencies, more self‐reliant industries, and a more knowledgeable citizenry. We discuss several aspects of ecosystem pattern and dynamics at large scales that provide insight into ecosystem resilience, and we propose a “Golden Rule” of natural resource management that we believe is necessary for sustainability: management should strive to retain critical types and ranges of natural variation in resource systems in order to maintain their resiliency.

Ecosystem dynamics and resilienceSustainability and Ecological Systems AnalysisConservation, Biodiversity, and Resource ManagementCommand and controlEcosystem managementIncentiveNatural resourceNatural resource managementControl (management)Environmental resource managementResource (disambiguation)Resource management (computing)Psychological resilience
Citations
2,013
FWCI
14.10
field-weighted impact
References
33
Percentile
99%
vs. same field & year
Citations per year
Cited by
APPLIED HISTORICAL ECOLOGY: USING THE PAST TO MANAGE FOR THE FUTURE
Ecological Applications · 1999 · 1,380 citations
Scenario Planning: a Tool for Conservation in an Uncertain World
Conservation Biology · 2003 · 1,361 citations
Rethinking Community‐Based Conservation
Conservation Biology · 2004 · 1,844 citations
Conservation Where People Live and Work
Conservation Biology · 2002 · 863 citations
Co-management: concepts and methodological implications
Journal of Environmental Management · 2005 · 1,235 citations
References
Biodiversity and Ecological Redundancy
Conservation Biology · 1992 · 1,685 citations
Habitat, the Templet for Ecological Strategies?
Journal of Animal Ecology · 1977 · 2,257 citations
Adaptive Management of Renewable Resources.
Biometrics · 1987 · 3,345 citations
Barriers and Bridges to the Renewal of Ecosystems and Institutions
Journal of Wildlife Management · 1997 · 1,121 citations
The Ecology of Natural Disturbance and Patch Dynamics.
Journal of Applied Ecology · 1986 · 3,979 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.