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30 results for “coastal zooplankton”
Warming drives phenological changes in coastal zooplankton
<p>This repository contains zooplankton observations and model data used in the article Forsblom, Stoffers, Lindén, Lehtiniemi and Engstöm-Öst (2024) Warming drives phenological changes in coastal zooplankton. Marine Biology (in press).</p>
Fig. 6 in Spatial variation of summer microphytoplankton and zooplankton communities related to environmental parameters in the coastal area of Djerba Island (Tunisia, Eastern Mediterranean) Abstract
Fig. 6: Spatial variation of copepod demographic class density: copepod nauplii, copepodit and adult males and females along the west and east coasts of Djerba Island.
Fig 8 in Spatial variation of summer microphytoplankton and zooplankton communities related to environmental parameters in the coastal area of Djerba Island (Tunisia, Eastern Mediterranean) Abstract
Fig 8: Correlation matrix (Pearson test) for biological variables in relation to abiotic variables determined along the west and east coasts of Djerba Island.
Fig. 4 in Spatial variation of summer microphytoplankton and zooplankton communities related to environmental parameters in the coastal area of Djerba Island (Tunisia, Eastern Mediterranean) Abstract
Fig. 4: Spatial variations of microphytoplankton abundance, microphytoplankton groups, dominant species, species richness and species diversity index along the west and east coasts of Djerba Island.
Fig. 7 in Spatial variation of summer microphytoplankton and zooplankton communities related to environmental parameters in the coastal area of Djerba Island (Tunisia, Eastern Mediterranean) Abstract
Fig. 7: Principal component analysis (PCA) (axis I and II) of microphytoplankton and zooplankton communities' abundance and selected environmental variables along the west and east coasts of Djerba Island.
Fig. 3 in Spatial variation of summer microphytoplankton and zooplankton communities related to environmental parameters in the coastal area of Djerba Island (Tunisia, Eastern Mediterranean) Abstract
Fig. 3: Spatial variations of nutrient concentrations: nitrite (NO -), nitrate (NO -), ammonium (NH +), total nitrogen (T- 2 3 4 N), orthophosphate (PO 3-), total phosphate (T-P), N/P ratio, 4 and silicate along the west and east coasts of Djerba Island.
Fig. 1 in Spatial variation of summer microphytoplankton and zooplankton communities related to environmental parameters in the coastal area of Djerba Island (Tunisia, Eastern Mediterranean) Abstract
Fig. 1: Location of sampling stations along the western and eastern coasts of Djerba Island. The grey contour lines in the maps show the position of the isobaths and the numbers in parenthesis indicate the depths of these isobaths. Table 1. Sampling date, depth, latitude and longitude of sampled stations.
Fig. 1 in Spatial variation of summer microphytoplankton and zooplankton communities related to environmental parameters in the coastal area of Djerba Island (Tunisia, Eastern Mediterranean) Abstract
Fig. 1: Location of sampling stations along the western and eastern coasts of Djerba Island. The grey contour lines in the maps show the position of the isobaths and the numbers in parenthesis indicate the depths of these isobaths.
Figure 2 in Impacts of environmental factors on zooplankton taxonomic diversity in coastal lagoons in Turkey
Figure 2. Venn diagram showing identified zooplankton taxa distribution and number of taxa (in parentheses) in the lagoons.
Figure 4 in Does the location of coastal brackish waters determine diversity and abundance of zooplankton assemblages?
Figure 4. Seasonal (monthly) changes in the total zooplankton abundance (mean, minimum, and maximum densities) (ind. dm–3) in the Vistula Lagoon and Lake Łebsko in 2010–2011.
Figure 6 in Does the location of coastal brackish waters determine diversity and abundance of zooplankton assemblages?
Figure 6. Seasonal (monthly) changes in the total zooplankton biomass (mean, minimum, and maximum values) (mg. dm–3) in the Vistula Lagoon and Lake Łebsko in 2010–2011.
Figure 1 in Assessment of the zooplankton community structure of the coastal Uzungöl Lagoon (Kızılırmak Delta, Turkey) based on community indices and physicochemical parameters
Figure 1. Geographical location of study area, coordinates of sampling points. Station 1: 41°32'33.85"N - 36°04'56.80"E; Station 2: 41°33'36.66"N - 36°05'22.24"E; Station 3: 41°34'11.10"N - 36°05'40.67"E; Station 4: 41°34'44.82"N - 36°06'0.14"E; Station 5: 41°35'7.57"N - 36° 06'20.14"E.
Figure 6 in Assessment of the zooplankton community structure of the coastal Uzungöl Lagoon (Kızılırmak Delta, Turkey) based on community indices and physicochemical parameters
Figure 6. Zooplankton community indices (Shannon Diversity, Pielou evenness and Species richness) during the study period.
Figure 3 in Assessment of the zooplankton community structure of the coastal Uzungöl Lagoon (Kızılırmak Delta, Turkey) based on community indices and physicochemical parameters
Figure 3. Seasonal density (ind. m -3) changes of nauplii larvae and copepodit individuals in Uzungöl Lagoon.
Figure 4 in Zooplankton abundance, biomass, and size structure in the coastal waters of the northeastern Mediterranean Sea
Figure 4. Annual mean values of zooplankton biomass and abundance.
Figure 2 in Zooplankton abundance, biomass, and size structure in the coastal waters of the northeastern Mediterranean Sea
Figure 2. Temperature and salinity values in the seasons for 3 years.
Figure 1 in Zooplankton abundance, biomass, and size structure in the coastal waters of the northeastern Mediterranean Sea
Figure 1. Sampling stations in the study area.
Figure 1 in Impacts of environmental factors on zooplankton taxonomic diversity in coastal lagoons in Turkey
Figure 1. The location of the Dalyan and Arapçiftliği lagoons.
Figure 1 in Does the location of coastal brackish waters determine diversity and abundance of zooplankton assemblages?
Figure 1. Location of the research stations on the Vistula Lagoon and Lake Łebsko.
Figure 5 in Does the location of coastal brackish waters determine diversity and abundance of zooplankton assemblages?
Figure 5. Biomass (mg dm–3) of zooplankton in the Vistula Lagoon and Lake Łebsko in 2010–2011.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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