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Hypoxia: From molecular responses to ecosystem responses
Shiu Sun Rudolf WU
Department of Science and Environmental Studies (SES)
Research output
:
Contribution to journal
›
Articles
›
peer-review
687
Citations (Scopus)
Overview
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Dive into the research topics of 'Hypoxia: From molecular responses to ecosystem responses'. Together they form a unique fingerprint.
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Biochemistry, Genetics and Molecular Biology
Anaerobic Respiration
50%
Angiogenesis
50%
Benthos
50%
Breathing Rate
50%
Demersal Fish
50%
Deposit Feeder
50%
Downregulation
100%
Erythropoiesis
50%
Hemeprotein
50%
Hemocyte
50%
Hemoprotein
50%
Hydrogen Sulfide
50%
Hypoxia Inducible Factor 1
100%
Macrobenthos
50%
Marine Species
50%
Metabolic Inhibition
50%
Nannoplankton
50%
Oxidation Reduction Reaction
50%
Oxygen Affinity
50%
Pelagic Fish
50%
Phytoplankton
100%
Population Growth
50%
Predation
50%
Protein Synthesis Regulation
50%
Regulatory Enzymes
50%
Species Composition
50%
Species Diversity
50%
Species Richness
50%
Surface Property
50%
Transcription
50%
Transcription Factors
50%
Immunology and Microbiology
Angiogenesis
50%
Benthos
50%
Breathing Rate
50%
Demersal Fish
50%
Deposit Feeder
50%
Downregulation
100%
Erythropoiesis
50%
Hemocyte
50%
Hypoxia Inducible Factor 1
100%
Macrobenthos
50%
Marine Species
50%
Metabolic Inhibition
50%
Nannoplankton
50%
Oxidation Reduction Reaction
50%
Oxygen Affinity
50%
Pelagic Fish
50%
Phytoplankton
100%
Population Growth
50%
Predation
50%
Protein Synthesis Regulation
50%
Species Composition
50%
Species Diversity
50%
Species Richness
50%
Surface Property
50%
Transcription Factors
50%
Earth and Planetary Sciences
Angiogenesis
25%
Benthos
50%
Demersal Fish
25%
Deposit Feeder
25%
Ecological Effect
25%
Ecosystem Response
100%
Fishery Production
25%
Functional Group
25%
Global Warming
25%
Hypoxic Condition
50%
Macrobenthos
25%
Marine Animal
100%
Marine Organism
25%
Meiobenthos
25%
Nannoplankton
25%
Organic Material
25%
Pelagic Fish
25%
Phytoplankton
50%
Population Growth
25%
Predation
25%
Protein Synthesis
25%
Reactive Oxygen Species
25%
Species Diversity
25%
Species Richness
25%
Temperate Region
25%
Keyphrases
Ammonia
6%
Anaerobic Respiration
6%
Angiogenesis
6%
Benthic Communities
13%
Benthic Fish
6%
Benthos
6%
Binding Capacity
6%
Blood Oxygenation
6%
Burrow
6%
Cell-based
6%
Cell-based Sensor
6%
Copyright
6%
Defaunation
6%
Demersal Fish
6%
Deposit Feeder
6%
Ecological Effects
6%
Ecosystem Response
100%
Energy Conservation
6%
Erythropoiesis
6%
Feeder
6%
Fish Community
6%
Fisheries Production
6%
Frequency Occurrence
6%
Functional Groups
6%
Global Warming
6%
Glycolysis
6%
Haem Protein
6%
Hemoglobin
6%
Human Population Growth
6%
Hydrogen Sulfide
6%
Hypoxia
100%
Hypoxia-inducible
6%
Hypoxia-inducible factor-1α (HIF-1α)
13%
Hypoxic Condition
13%
Hypoxic Environment
6%
Individual Fitness
6%
Inducible Genes
6%
Macrobenthos
6%
Major Change
6%
Marine Animals
26%
Marine Organisms
6%
Marine Water
6%
Mass Mortality
6%
Meiobenthos
6%
Metabolic Depression
6%
Molecular Oxygen
6%
Molecular Response
100%
Nannoplankton
6%
Natural Conditions
6%
Oxygen Binding
6%
Oxygen Delivery
6%
Particulate Organic Matter
6%
Pelagic Fish
6%
Phosphorylation
6%
Physiological Adjustment
6%
Phytoplankton Community
13%
Predation
6%
Protein Downregulation
6%
Protein Synthesis Regulation
13%
Reactive Oxygen Species
6%
Red Blood Cells
6%
Redox Reaction
6%
Regulatory Enzymes
6%
Respiration Rate
6%
Senor
6%
Signaling Molecules
6%
Species Composition
6%
Species Diversity
6%
Species Richness
6%
Species Survival
6%
Subtropical Environment
6%
Temperate Region
6%
Transcription Factor
6%
Trophodynamics
6%
Agricultural and Biological Sciences
Angiogenesis
6%
Blood Cell
6%
Demersal Fish
6%
Erythropoiesis
6%
Global Warming
6%
Hydrogen Sulfide
6%
Hypoxemia
100%
Hypoxia-Inducible Factor 1
12%
Meiobenthos
6%
Pelagic Fish
6%
Phytoplankton
12%
Population Growth
6%
Predation
6%
Protein Synthesis
6%
Species Diversity
6%
Transcription Factor
6%