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Fig. 2 in Occurrence of sea lice, Caligus undulatus Shen and Li, 1959 (Copepoda: Siphonostomatoida: Caligidae) in plankton samples collected from Korea
Fig. 2. Caligus undulatus, adult female from Gangjin Bay, Korea. A. habitus dorsal. B. caudal ramus, dorsal. C. antennules. D. antenna. E. postantennal process. F. mandible. G. maxillule. H. maxilla. I. tip of maxilla. J. maxilliped. K. sternal furca. Scale bars: A = 400 μm; B = 200 μm; C, H, J, K = 100 μm; D-G, I = 50 μm.
Fig. 1 in Occurrence of sea lice, Caligus undulatus Shen and Li, 1959 (Copepoda: Siphonostomatoida: Caligidae) in plankton samples collected from Korea
Fig. 1. Map showing the sampling sites along the southern coast of Korea. A. Gwangyang Bay and Gangjin Bay. B. Mokpo Harbor.
Supplementary material 1 from: Sze Y, Miranda LN, Sin TM, Huang D (2018) Characterising planktonic dinoflagellate diversity in Singapore using DNA metabarcoding. Metabarcoding and Metagenomics 2: e25136. https://doi.org/10.3897/mbmg.2.25136
8-bp barcode and primer sequences used for multiplexed sequencing :
Supplementary material 5 from: Cahoon AB, Huffman AG, Krager MM, Crowell RM (2018) A meta-barcoding census of freshwater planktonic protists in Appalachia – Natural Tunnel State Park, Virginia, USA. Metabarcoding and Metagenomics 2: e26939. https://doi.org/10.3897/mbmg.2.26939
Table 3. Diversity Indices. :
Supplementary material 3 from: Cahoon AB, Huffman AG, Krager MM, Crowell RM (2018) A meta-barcoding census of freshwater planktonic protists in Appalachia – Natural Tunnel State Park, Virginia, USA. Metabarcoding and Metagenomics 2: e26939. https://doi.org/10.3897/mbmg.2.26939
Table 1. All Detected Taxa :
Supplementary material 1 from: Cahoon AB, Huffman AG, Krager MM, Crowell RM (2018) A meta-barcoding census of freshwater planktonic protists in Appalachia – Natural Tunnel State Park, Virginia, USA. Metabarcoding and Metagenomics 2: e26939. https://doi.org/10.3897/mbmg.2.26939
Figure 1. Sample collection sites :
Supplementary material 6 from: Cahoon AB, Huffman AG, Krager MM, Crowell RM (2018) A meta-barcoding census of freshwater planktonic protists in Appalachia – Natural Tunnel State Park, Virginia, USA. Metabarcoding and Metagenomics 2: e26939. https://doi.org/10.3897/mbmg.2.26939
Table 4. The protist genera identified in Natural Tunnel State Park organised by read count. :
Supplementary material 4 from: Cahoon AB, Huffman AG, Krager MM, Crowell RM (2018) A meta-barcoding census of freshwater planktonic protists in Appalachia – Natural Tunnel State Park, Virginia, USA. Metabarcoding and Metagenomics 2: e26939. https://doi.org/10.3897/mbmg.2.26939
Table 2. Primers and PCR Conditions. :
All observational data for the study "Mixing, stratification and plankton under lake-ice: implications for summertime oxygen levels in the hypolimnion of a large lake"
<p>All field measurements of temperature, oxygen, conductivity, and velocity used in this study</p>
FIGURE 3 in Biogeography and co-occurrence of 16 planktonic species of Keratella Bory de St. Vincent, 1822 (Rotifera, Ploima, Brachionidae) in lakes and reservoirs of the United States
FIGURE 3. Box and whisker plot showing elevation range (m) by quartile for 15 species of Keratella.
Figure 3 from: Suárez-Morales E, Castellanos-Osorio IA (2019) A new species of Monstrilla (Copepoda, Monstrilloida) from the plankton of a large coastal system of the northwestern Caribbean with a key to species. ZooKeys 876: 111-123. https://doi.org/10.3897/zookeys.876.38400
Figure 3 Monstrilla chetumalensis sp. nov., male holotype (A–E, C) A anterior part of cephalosome ventral view; arrow indicates nipple-like processes; s = sensilla B antennule segments 1–4 in dorsal view showing setal elements (sensu Grygier and Ohtsuka 1995) C fifth antennulary segment with setal elements (sensu Huys et al. 2007) D urosome lateral view E genital complex with lappets ventral view. Scale bars: 200 μm (A, B), 100 μm (C, D), 50 μm (E).
Figure 2 from: Suárez-Morales E, Castellanos-Osorio IA (2019) A new species of Monstrilla (Copepoda, Monstrilloida) from the plankton of a large coastal system of the northwestern Caribbean with a key to species. ZooKeys 876: 111-123. https://doi.org/10.3897/zookeys.876.38400
Figure 2 Monstrilla chetumalensis sp. nov., male holotype A habitus dorsal view B habitus lateral view, arrow indicates medial ventral protuberance C urosome ventral view; arrow indicates ventral globular processes on fifth pedigerous somite D urosome lateral view; arrow indicates ventral globular processes on fifth pedigerous somite E genital complex with lappets, ventral view. Scale bars: 100 μm. (A–C)
Figure 4 from: Suárez-Morales E, Castellanos-Osorio IA (2019) A new species of Monstrilla (Copepoda, Monstrilloida) from the plankton of a large coastal system of the northwestern Caribbean with a key to species. ZooKeys 876: 111-123. https://doi.org/10.3897/zookeys.876.38400
Figure 4 Monstrilla chetumalensis sp. nov., male holotype A leg 1 B leg 2 C leg 3 D leg 4. Scale bars: 100 μm.
Fig. 3. Cytostrombidium wailesi and C. longisomum. a, b in Insights on Short-term Blooms of Planktonic Ciliates, Provided by an Easily Recognised Genus: Cyrtostrombidium
Fig. 3. Cytostrombidium wailesi and C. longisomum. a, b – Lugol's preserved, protargol impregnated examples of C. wailesi; c – Lugol's preserved, protargol impregnated, conjugating C. wailesi; d – Lugol's preserved, conjugating C. wailesi; e – Lugol's preserved, protargol impregnated examples of C. longisomum; f – protargol impregnated example of C. longisomum; g – Lugol's preserved C. longisomum; h – protargol impregnated example of C. longisomum with two parasites (p). Scale bars: 5 µm.
Fig. 2 in Insights on Short-term Blooms of Planktonic Ciliates, Provided by an Easily Recognised Genus: Cyrtostrombidium
Fig. 2. Temporal variability in the abundance of the total heterotophic ciliate assemblage and the two Cyrtostrombidium species (ml–1), with an indication of the occurrence of conjugating pairs (arrows), at site C (Fig. 1).
Fig. 3 in Planktonic Ciliates of the Neva Estuary (Baltic Sea): Community Structure and Spatial Distribution
Fig. 3. Distribution patterns of ciliate abundance (ind ml–1, dark bars) and biomass (× 10–3 µg C ml–1, empty bars) in the Neva Estuary.
Fig. 4 in Planktonic Ciliates of the Neva Estuary (Baltic Sea): Community Structure and Spatial Distribution
Fig. 4. Relative abundance (%) of different size groups of ciliates in the Neva Estuary. Data are not presented for four stations (indicated by points) with extremely low ciliate abundances (<0.1 ind ml–1).
Fig. 11 in Micropaleontological Study Of The Gura Beliei Red Marls Formation From The Pietroșița Area (Turonian - Maastrichtian). Part Iii Campanian-Maastrichtian Planktonic Foraminifera
Fig. 11: 1-15 Abatomphalus sp.cf. A.intermedius, Maastrichtian, Țâța Valley, PietroȘița, LPB. IV. 12434; 16-21 Reugotruncana ellissi Brönnimann & Brown 1955), Maastrichtian, Țâța Valley, PietroȘița, LPB.IV. 12426; 22-27 Gansseria gansseri (Bolli 1951), Maastrichtian, Țâța Valley, PietroȘița, LPB. IV. 12442 (All specimens x 90).
Fig. 1 in Micropaleontological Study Of The Gura Beliei Red Marls Formation From The Pietroșița Area (Turonian - Maastrichtian). Part Iii Campanian-Maastrichtian Planktonic Foraminifera
Fig. 1: 1-3 Rugoglobigerina subbotinae Maslakova 1978, Maastrichtian, Țâța Valley, Pietrosița, LPB.IV. 12446; 4 Rugoglobigerina macrocephalla Brönnimann 1952, Maastrichtian, Tata Valley-Pietrositza, LPB.IV. 12413; 5-6 Rugoglobigerina rotundata Brönnimann, 1952, Maastrichtian, Țâța Valley, Pietrosița, LPB.IV.12416; 7-15 Rugoglobigerina subbotinae Maslakova 1978, Maastrichtian, Țâța Valley, Pietrosița, LPB.IV.12419; 16-27 Rugotruncana subrugosa (Gadolfi 1955), Maastrichtian, Țâța Valley, Pietrosița, LPB.IV.12420; 28-33 Globotruncanella subpetaloidea (Gandolfi 1955), Maastrichtian, Țâța Valley, LPB.IV. 12442; 34-36 Rugotruncana subcircumnodifer (Gandolfi 1955), Maastrichtian, Țâța Valley, LPB.IV. 12439 (All specimens x 90).
Fig. 4 in Micropaleontological Study Of The Gura Beliei Red Marls Formation From The Pietroșița Area (Turonian - Maastrichtian). Part Iii Campanian-Maastrichtian Planktonic Foraminifera
Fig. 4: 1-9 Rugoglobigerina subbotinae Maslakova 1978, Maastrichtian, Țâța Valley, PietroȘița, LPB.IV. 12446; 10-15 Globotruncanella havanensis (Voorwjik 1937), Maastrichtian, Țâța Valley, PietroȘița, LPB.IV. 12429; 16-21 Globotruncanella pshadae (Keller 1946), Maastrichtian, Țâța Valley, PietroȘița, L.P.B.IV.12427; 22-24, 31-36 Globotruncanella petaloidea (Gandolfi 1955), Maastrichtian, Țâța Valley, PietroȘița, LPB.IV.12428; 25-30 Archaeoglobigerina blowi Pessagno 1967, Maastrichtian, Țâța Valley, PietroȘița, LPB.IV.12449 (All specimens x 90).
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
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.