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Acartia hudsonica
Application of Next-Generation Sequencing For
S41598-020-66730-2.Pdf
Acartiidae Sars, G.O. 1903
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Food Web Interactions in the Plankton of Long Island Bays, with Preliminary Observations on Brown Tide Effects
Direct and Indirect Effects of Elevated CO2 Are Revealed Through Shifts in Phytoplankton, Copepod Development, and Fatty Acid Accumulation
Physiological Responses of the Copepods Acartia Tonsa and Eurytemora Carolleeae to Changes in the Nitrogen:Phosphorus Quality of Their Food
Impact of Improved Bottom Hypoxia on Zooplankton Community in Shallow Eutrophic Lake
UV Light and Vertical Distribution of the Marine Planktonic Copepod Acartia Hudsonica Pinhey
Molecular and Ecological Evidence for Cryptic Speciation of a Planktonic
Reproductive Isolation and Morphological Divergence Between Cryptic Lineages of the Copepod Acartia Tonsa in Chesapeake Bay
Acartia Tonsa Dana and Acute Testing with Copper on Different Life Cycle Stages
Relevant Scales in Zooplankton Ecology
Fatty Acid Profiles and Production in Marine Phytoplankton
Zooplankton Feeding Behavior and Particle Selection in Natural Plankton Assemblages Containing Toxic Alexandrium Spp
The Planktonic Food Web Structure of a Temperate Zone Estuary, and Its Alteration Due to Eutrophication
Acartia Tonsa Dana, 1849 (Calanoida: Copepoda) and Phylogenetic Reconstruction of the Genus Acartia Dana, 1846
Copepod Egg Production in Long Island Sound, USA, As a Function of the Chemical Composition of Seston
Top View
Diel Feeding Behavior in the Marine Copepod Acartia Tonsa in Relation to Food Availability
Plankton (David Borkman & Jefferson Turner)
Marine Plankton Food Webs and Climate Change
Seasonal Relationship Between the Digestive Enzyme Activity Of
Evaluation of Synchrony of Feeding Behaviour in Individual Acartia H Udsonica (Copepoda, Calanoida)
Supplement of Variability in Copepod Trophic Levels and Feeding
Mating Dynamics of the Calanoid Copepods Acartia Tonsa and Acartia Hudsonica Zair P Lojkovic Burris University of Connecticut - Storrs,
[email protected]
ICES Identification Leaflets for Plankton
Seasonal Succession of Four Acartia Copepods (Copepoda, Calanoida) in Okkirai Bay, Sanriku, Northern Japan
Prey Switching by Acartia Clausi: Experimental Evidence and Implications of Intraguild Predation Assessed by a Model
Copepods in Skeletonema-Dominated Food Webs Toxicity and Nutritional Quality As Factors Controlling Copepod-Diatom Interactions
Molecular Physiology of Copepods - from Biomarkers to Transcriptomes and T Back Again ⁎ Ann M
大西洋および太平洋域からの浮遊性カラヌス目焼脚類 Acaria Kudsonica
Genetic Diversity and Structure of Calanoid Copepods
Copepods and Their Resting Eggs, a Potential Source of Nauplii for Aquaculture
Factors Controlling Seasonal Succession of the Copepods Acartia Hudsonica and A
CURRA Research Report 11 16
Individual Variability and Environmental Conditions: Effects on Zooplankton Cohort Dynamics
Zooplankton of the York River Deborah K
A Biological Assessment of Zooplankton in St. Pauls Inlet, An
Dynamics of the Acartia Genus (Calanoida: Copepoda) in a Temperate Shallow Estuary (The Mondego Estuary) on the Western Coast of Portugal