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159 results for “sublittoral”
FIGURE 13 in Sublittoral and bathyal sea cucumbers (Echinodermata: Holothuroidea) from the Northern Mozambique Channel with description of six new species
FIGURE 13 Mesothuria parva (Théel, 1886). A: Dorsal views of specimens IE- 2007 - 813; B: SEM photos of ossicles from the body wall. Scale bars: A = 1 cm; B = 10 µm.
FIGURE 9 in Sublittoral and bathyal sea cucumbers (Echinodermata: Holothuroidea) from the Northern Mozambique Channel with description of six new species
FIGURE 9. Holothuria (Thymiosycia) impatiens (Forsskål, 1775). A: dorsal view of specimen IE- 2007 - 812; B: Sem views of ossicles from the dorsal body wall. Scale bares: A = 1 cm; B = 20 µm.
FIGURE 2 in Sublittoral and bathyal sea cucumbers (Echinodermata: Holothuroidea) from the Northern Mozambique Channel with description of six new species
FIGURE 2. Holothuria (Cystipus) yann sp. nov. A – B. Dorsal view (A) and ventral view (B) of paratypes. C – G: SEM photos of ossicles from tentacles (C), dorsal (D) and ventral (E) body wall, dorsal tube feet (F), lateral papillae (G) and ventral tube feet. A, B = 1 cm; C = 50 µm; D – H = 20 µm.
FIGURE 8 in Sublittoral and bathyal sea cucumbers (Echinodermata: Holothuroidea) from the Northern Mozambique Channel with description of six new species
FIGURE 8. Holothuria (Stauropora) bo sp. nov. A: Ventral and dorsal views of holotype; B – E: Ossicles from dorsal body wall (B), ventral body wall (C), ventral tube feet (D) from tentacles (E), and dorsal tube feet (F). Scale bars: A = 1 cm, B – D = 10 µm, E = 50 µm, F = 20 µm.
FIGURE 10. Stichopus herrmanni Semper, 1868. A – C in Sublittoral and bathyal sea cucumbers (Echinodermata: Holothuroidea) from the Northern Mozambique Channel with description of six new species
FIGURE 10. Stichopus herrmanni Semper, 1868. A – C: SEM photos of ossicles from the body wall (A, B) and tube feet (C). Scale bars: A, B = 10 µm; C = 50 µm.
FIGURE 4 in Sublittoral and bathyal sea cucumbers (Echinodermata: Holothuroidea) from the Northern Mozambique Channel with description of six new species
FIGURE 4. Holothuria (Metriatyla) alex sp. nov. A – B: Dorsal (A) and ventral (B) views of holotype; C – F: SEM photos of ossicles from tentacles (C), dorsal body wall (D), lateral papillae (E) and dorsal papillae (F). Scale bars: A, B = 1 cm; C, E, F = 20 µm; D = 10 µm.
FIGURE 1. Bohadschia cousteaui Cherbonnier, 1954. A – B in Sublittoral and bathyal sea cucumbers (Echinodermata: Holothuroidea) from the Northern Mozambique Channel with description of six new species
FIGURE 1. Bohadschia cousteaui Cherbonnier, 1954. A – B: SEM photos of ossicles from ventral (A) and dorsal (B) body wall. Scale bars: 20 µm.
FIGURE 6 in Sublittoral and bathyal sea cucumbers (Echinodermata: Holothuroidea) from the Northern Mozambique Channel with description of six new species
FIGURE 6. Holothuria (Metriatyla) cyrielle sp. nov. A – B: dorsal (A) and ventral (B) views of holotype; C – G: SEM photos of ossicles from tentacles (C), dorsal body wall (D), ventral body wall (E), dorsal tube feet (F) and ventral tube feet (G). Scale bars: A, B = 1 cm; C = 100 µm; E – G = 20 µm.
FIGURE 7 in Sublittoral and bathyal sea cucumbers (Echinodermata: Holothuroidea) from the Northern Mozambique Channel with description of six new species
FIGURE 7. Holothuria (Metriatyla) kurti Ludwig, 1891. A – B: Lateral (A) and dorsal (B) views of specimen IE- 2007 - 768. C: SEM photos of ossicles from the lateral papillae. Scale bars: A, B = 1 cm; C = 20 µm.
Figure 1 in Vegetation of the supralittoral and upper sublittoral zones of the Western German Baltic Sea coast: a phytosociological study
Figure 1: Map of sampling sites in Northern Germany. Insets (a–c) provide higher resolution. Sampling areas: 1 – Glücksburg; 2 – Glücksburg Estuary; 3 – Bockholmwik; 4 – Neukirchen; 5 – Norgaardholz; 6 – Falshoft; 7 – Maasholm, Schlei; 8 – SchÖnhagen; 9 – Fischleger; 10 – Karlsminde; 11 – EckernfÖrde, port; 12 – EckernfÖrde, Kiekut; 13 – Aschau, sea; 14 – Aschau, lagoon; 15 – Kiel-Bülk; 16 – Kiel-Schilksee, marina; 17 – Kiel-Friedrichsort; 18 – Kiel-Holtenau, Tonnenhof; 19 – Kiel-Düsternbrook; 20 – Kiel-MÖnkeberg; 21 – Kiel-Heikendorf, Hafen; 22 – Kiel-Laboe; 23 – Kiel-Marina Wendtorf; 24 – Kiel-Brasilien; 25 – Hohwacht; 26 – Weissenhäuser Strand; 27 – Heiligenhafen, sea; 28 – Heiligenhafen, Binnensee; 29 – Heiligenhafen, marina; 30 – Grossenbroderfahre; 31 – Strukkamphuk, Fehmarn; 32 – Westerberg, Fehmarn; 33 – Flügge, Orther Bucht, Fehmarn; 34 – Gruner Brink, Fehmarn; 35 – Burgtiefe, Fehmarn; 36 – Burger Binnensee, Fehmarn; 37 – Wulfen, Fehmarn; 38 – Marina Grossenbrode; 39 – Süssau; 40 – Kellenhusen; 41 – Neustadt, Binnenwasser; 42 – Brodtener Ufer; 43 – Rosenhagen; 44 – Steinbeck; 45 – Boltenhagen; 46 – Wohlenberg; 47 – Hohen-Wieschendorf; 48 – Zierow; 49 – Redentin; 50 – Bridge to Poel, S side; 51 – Bridge to Poel, N side; 52 – Kirchdorf; 53 – Timmendorf, Poel; 54 – Gollwitz, Poel.
Figure 4 in Vegetation of the supralittoral and upper sublittoral zones of the Western German Baltic Sea coast: a phytosociological study
Figure 4: Number of species from different phytogeographical elements in each macrophyte community of the SW Baltic Sea. Phytogeographical elements are indicated in accordance with Cormaci et al. (1982), supplemented by data from Zinova (1962) and Kalugina-Gutnik (1975): C – Cosmopolitan, SC – Sub-cosmopolitan, AP – Atlanto-Pacific, IP – Indo-Pacific, CB – Circumboreal, IA – Indo-Atlantic, Abt – Boreo-tropical Atlantic, CT – Circumtropical, Ab – Boreo-Atlantic, Aba – Boreo-Arctic Atlantic, Pb – Boreo-Pacific.
Figure 3 in Vegetation of the supralittoral and upper sublittoral zones of the Western German Baltic Sea coast: a phytosociological study
Figure 3: Distribution of the macrophyte communities of the SW Baltic Sea in habitats with different exposure. The y-axis shows the proportion of habitats with different exposure grades in which the different communities were found.
Figure 2 in Vegetation of the supralittoral and upper sublittoral zones of the Western German Baltic Sea coast: a phytosociological study
Figure 2: Maximum likelihood phylogram based on tufA sequence data, showing the phylogenetic relationships of 12 Ulvales samples from the Baltic Sea (bold) identified in this study. Numbers after species names indicate collection sites (see Figure 1). Numbers below branches are bootstrap values; poorly supported nodes (>0.70) are not labelled. Branch lengths are proportional to sequence divergence.
Fig. 10. Microloxoconcha sublittoralis n in Two New Species of Microloxoconcha (Crustacea: Ostracoda) from the Sublittoral Zone in Western Japan
Fig. 10. Microloxoconcha sublittoralis n. sp., holotype male (NSMT-Cr 26689). A, fifth limb; B, sixth limb; C, seventh limb; D, brush shaped organ; E, male copulatory organ. Scale bar: 0.05 mm. Abbreviations: Bc, basal capsule; Ca, clasping apparatus; Cd, copulatory duct; Dl, distal lobe; Ur, upper ramus.
Fig. 9. Microloxoconcha sublittoralis n in Two New Species of Microloxoconcha (Crustacea: Ostracoda) from the Sublittoral Zone in Western Japan
Fig. 9. Microloxoconcha sublittoralis n. sp., holotype male (NSMT-Cr 26689). A, antennula; B, antenna; C, mandibula; D, maxillula. Scale bar: 0.05 mm. Abbreviations: ba, basis; cx, coxa; en, endopodite; ex, exopodite.
Fig. 8. Microloxoconcha sublittoralis n in Two New Species of Microloxoconcha (Crustacea: Ostracoda) from the Sublittoral Zone in Western Japan
Fig. 8. Microloxoconcha sublittoralis n. sp., holotype male (NSMT-Cr 26689). A, internal lateral view of right valve; B, internal lateral view of left valve. Scale bar: 0.1 mm.
Fig. 7. Microloxoconcha sublittoralis n in Two New Species of Microloxoconcha (Crustacea: Ostracoda) from the Sublittoral Zone in Western Japan
Fig. 7. Microloxoconcha sublittoralis n. sp., SEM images. A, B, holotype male (NSMT-Cr 26689); C, D, paratype female (NSMT-Cr 26690). A, external lateral view of right valve; B, external lateral view of left valve; C, external lateral view of right valve; D, external lateral view of left valve. Scale bar: 0.1 mm.
Fig. 6. Microloxoconcha toyoshioae n in Two New Species of Microloxoconcha (Crustacea: Ostracoda) from the Sublittoral Zone in Western Japan
Fig. 6. Microloxoconcha toyoshioae n. sp., paratype female (NSMT-Cr 26688), posterior part of body and female genitalia. Scale bar: 0.05 mm. Abbreviations: Rs, receptaculum seminis; Sd, spermathecal duct; Sf, sclerotized framework of genital opening.
Fig. 4. Microloxoconcha toyoshioae n in Two New Species of Microloxoconcha (Crustacea: Ostracoda) from the Sublittoral Zone in Western Japan
Fig. 4. Microloxoconcha toyoshioae n. sp. A–C, holotype male (NSMT-Cr 26685); D, paratype male (NSMT-Cr 26687). A, antennula; B, antenna; C, mandibula; D, maxillula. Scale bar: 0.05 mm. Abbreviations: ba, basis; cx, coxa; en, endopodite; ex, exopodite.
Fig. 3. Microloxoconcha toyoshioae n in Two New Species of Microloxoconcha (Crustacea: Ostracoda) from the Sublittoral Zone in Western Japan
Fig. 3. Microloxoconcha toyoshioae n. sp., holotype male (NSMT-Cr 26685). A, internal lateral view of right valve; B, internal lateral view of left valve. Scale bar: 0.1 mm.
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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.