Skip to main navigation
Skip to search
Skip to main content
Experts@Minnesota Home
Search content at Experts@Minnesota
Home
Profiles
Research units
University Assets
Projects and Grants
Research output
Datasets
Press/Media
Activities
Fellowships, Honors, and Prizes
Impacts
Quantifying cryptic function loss during community disassembly
Akira Terui
,
Jacques C. Finlay
, Amy T. Hansen
,
Jessica L. Kozarek
Ecology, Evolution and Behavior
St. Anthony Falls Laboratory
Research output
:
Contribution to journal
›
Article
›
peer-review
5
Link opens in a new tab
Scopus citations
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Quantifying cryptic function loss during community disassembly'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Loss Function
100%
Community Disassembly
100%
Behavioral Response
66%
Ecosystem Function
55%
Clearance Rate
44%
Freshwater mussels
33%
Total Suspended Solids
33%
Anthropogenic Pressure
33%
Water Clearance
33%
Mussels
22%
Meta-analysis
11%
Biodiversity Loss
11%
Population Density
11%
Behavior Change
11%
Watershed Scale
11%
Community Level
11%
Midwestern United States
11%
Population Change
11%
Population Response
11%
Unionid
11%
Ecosystem Resilience
11%
Sediment Concentration
11%
Reduced Water
11%
Local Extinction
11%
Rate Change
11%
Ecological Communities
11%
Species Loss
11%
Species Decline
11%
Agricultural Land Use
11%
Ecosystem Level
11%
Stressful Conditions
11%
Behavioral Sensitivity
11%
Behavioral Processes
11%
Change in Mass
11%
Immediate Function
11%
Density Response
11%
Consistent Rate
11%
Simulated Water
11%
Stream Biota
11%
Extinction Behaviour
11%
Freshwater Biodiversity
11%
Community Orders
11%
Across Species
11%
Human-induced Environmental Change
11%
Population Sensitivity
11%
Emerging Theory
11%
Earth and Planetary Sciences
Ecosystem Function
100%
Freshwater
80%
United States of America
20%
Farmland
20%
Field Experiment
20%
Environmental Change
20%
Local Extinction
20%
Ecosystem Resilience
20%
Land Use
20%
Population Density
20%
Underpinnings
20%
Water Level
20%
Population Dynamics
20%
Agricultural and Biological Sciences
Mussel
100%
Freshwater
80%
Watersheds
20%
Arable Land
20%
Sole
20%
Unionida
20%
Meta-Analysis
20%
Biodiversity
20%
Land Use
20%
Population Density
20%
Population Dynamics
20%
Immunology and Microbiology
Mussel
100%
Suspended Particulate Matter
60%
Population Density
20%
Ecosystem Resilience
20%
Biodiversity
20%
Population Dynamics
20%