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Figure 2 in Surveying seaweeds from the Ulvales and Fucales in the world's most frequently used artificial waterway, the Kiel Canal
Figure 2: Maximum likelihood tree inferred from tufA sequences, representing Ulvales species and their respective morphotypes, present in the Kiel Canal. Numbers at nodes refer to bootstrap values>70. Branch lengths are drawn proportionally to the amount of sequence change and GenBank accession numbers are given for all included samples. Clades containing specimens investigated within this study are highlighted in gray. Sample sites and their recorded salinity within the Kiel Canal are indicated. Samples marked with a solid circle are of unbranched morphology, those labeled with an asterisk are branched.
Figure 5 in Surveying seaweeds from the Ulvales and Fucales in the world's most frequently used artificial waterway, the Kiel Canal
Figure 5: Morphology of material genetically identified as Ulva linza collected from the Kiel Canal. Sampling sites with salinity recorded during collection are indicated. Branched and unbranched morphotypes of U. linza observed at two sampling sites with relatively high (A–B) and low (C–D) salinity are shown.
Stable and radiocarbon isotope compositions of DOC and DIC in Southeast Asian drainage canals
<p>This dataset contains the stable and radiocarbon isotope compositions of dissolved organic carbon (DOC) and radiocarbon isotope compositions of dissolved inorganic carbon (DIC) produced during DOC microbial respiration and photomineralization in canal waters sampled across disturbed peatlands in West Kalimantan, Indonesia in 2022. Microbial respiration and photomineralization experiments were carried out during laboratory incubations and natural sunlight exposures of canal water samples, respectively. Significant changes in the radiocarbon isotope composition of DIC between treatment and control waters were detected using a headspace extraction technique followed by a small-carbon extraction line for radiocarbon samples. </p>
Fig. 1 in Can maxillary canal morphology inform varanopid phylogenetic affinities?
Fig. 1. Lateral view of the maxillary canal in left lateral view. A. Orovenator mayorum Reisz, Modesto, and Scott, 2011 (OMNH 74606) from the lower Permian of the Dolese Brothers Limestone Quarry (Oklahoma, USA). B. Prolacerta broomi Parrington, 1935 (UCMP 7151, mirrored for comparison) from the Lower Triassic of Big Bank (Harrismith District, South Africa). C. Heleosaurus scholtzi Broom, 1907 (CGRMS353) from the middle Permian of South Africa. D. Varanosaurus acutirostris Broili, 1904 (FMNH PR 1670) from the lower Permian Wellington Formation (Garvin County, Oklahoma, USA). The maxillary canal is in green, the maxillary sinus is in purple, and the skull is transparent. Circles represent the position of a structure not visible in lateral view. Abbreviations: 1, conical cavity; 2, main trunk of the maxillary canal; 3, caudal section of the maxillary canal; 4, caudally extended side branches.
Fig. 17 in Sieve-type normal pore canals in Jurassic ostracods: A review with description of a new genus
Fig. 17. Cytherid ostracod Minyocythere tuberculata (Luppold, 2012) from Borehole Rodewald WA12, 404.5 m, NW Germany, Lower Bajocian. A. SMF Xe 23754, female left valve in external (A1) and internal (A4) views, micro sieve-type pore canals (StPC-m) (A2), macro sieve-type normal pore canals (StPC-M) A3), hinge, posterior (A5) and anterior (A6) parts. B. SMF Xe 23755, female right valve in external view.
Fig. 10 in Sieve-type normal pore canals in Jurassic ostracods: A review with description of a new genus
Fig. 10. Cytherid ostracod Minyocythere sp. cf. M. macroporosa sp. nov. from Borehole Rodewald WA12, 404.5 m (A), 386 m (B–E), 404.5 m (F, G), NW Germany, Witchellia laeviuscula Zone (Braun Jura γ upper), Lower Bajocian. A. SMF Xe 23725, male left valve in external view (A1), antero-dorsal area (A2), macro sieve-type normal pore canals (StPC-M) (A3), and micro sieve-type normal pore canals (StPC-m) (A4). B. SMF Xe 23726, female left valve in external view. C. SMF Xe 23727, female carapace in right (C1) and dorsal (C2) views. D. SMF Xe 23728, female right valve in external view. E. SMF Xe 23729, male carapace in dorsal view. F. SMF Xe 23730, fragment of female right valve in internal view. G. SMF Xe 23731, male left valve, internal view (G1), hinge (G2).
Fig. 16 in Sieve-type normal pore canals in Jurassic ostracods: A review with description of a new genus
Fig. 16. Normal pore canals (NPC) on juvenile left valves (A, stage A-2; B, stage A-3; C, stage A-4) in cytherid ostracod Minyocythere maculosa (Bate, 1963) from Borehole Rodewald WA6, 390 m, NW Germany, Lower Bajocian (Braun Jura γ). A. SMF Xe 23751, general view (A1), micro sieve-type pore canals (StPC-m) on the outer side of the valve (A2), macro sieve-type normal pore canals (StPC-M) on the outer side of the valve (A3, A4), StPC-M on the inner side of the valve (A5), and simple NPC on the outer side of the valve (A6). B. SMF Xe 23752, general view (B1), StPC-m on the outer side of the valve (B2), StPC-M on the inner side of the valve (B3). C. SMF Xe 23753, general view (C1), StPC-m on the outer side of the valve (C2), StPC-M on the outer side of the valve (C3).
Fig. 3 in Sieve-type normal pore canals in Jurassic ostracods: A review with description of a new genus
Fig. 3. Sieve-type normal pore canals (StPC) in Aphelocythere and Camptocythere spp. A. Aphelocythere perforata Plumhoff, 1963, from Borehole Wesendorf 51a, 1031–1035 m, NW Germany, Upper Aalenian. SMF Xe 5608 (Plumhoff Collection), carapace in external right view (A1), macro StPC (StPC-M) (A2–A4). B, C. Camptocythere praecox Triebel, 1950 from Borehole Hambühren WA 2, 341 m, NW Germany, Leioceras opalinum Zone, Lower Aalenian (Braun Jura α). B. Paratype, SMF Xe 1448, male right valve in external view (B1), mid-anterior area behind marginal rim, ornamentation and pores (large and small) (B2), StPC-M with a peripheral large pore (B3), micro StPC (StPC-m) (B4). C. Paratype, SMF Xe 1448, male right valve in internal view (C1), hinge (C2), StPC-m (C3). D. Camptocythere media Triebel, 1950 from Borehole Altencelle 1014, 212/16 m, NW Germany, Upper Aalenian (Braun Jura β). Paratype, SMF Xe 1513, female left valve in external view (D1), detail, antero-dorsal area, ornamentation and pores (large and small) (D2), round StPC-M (D3), elongate StPC-M (D4), StPC-m (D5).
Fig. 2 in Sieve-type normal pore canals in Jurassic ostracods: A review with description of a new genus
Fig. 2. Sieve-type normal pore canals (StPC) in Phraterfabanella spp. A, B. Phraterfabanella tridentinensis Whatley and Boomer in Boomer et al., 2001, from Rotzo Member, Calcari Grigi Formation, Trento Platform, Venetian Prealps, NE Italy, Upper Sinemurian, Lower Jurassic. A. SMF Xe 23715, female left valve, in external view (A1). Detail of antero-dorsal area (A2), macro StPC (StPC-M) (A3), micro StPC (StPC-m) (A4), and large StPC (A5). B. SMF Xe 23716, male? fragment of right valve, in internal view (B1), StPC-M in general view (B2) and details (B3, B4). C. Phraterfabanella boomeri Cabral and Colin, 2015, from Praia da Concha, Coimbra Formation, sample PCR-318, Portugal, Upper Sinemurian, Lower Jurassic. SMF Xe 23717, male carapace, in external left view (C1), StPC-M in general view (C3) and details (C2, C4, C5).
Fig. 13 in Sieve-type normal pore canals in Jurassic ostracods: A review with description of a new genus
Fig. 13. Length versus height plots for Minyocythere angulata sp. nov. A-1, A-2, A-4, estimated growth (moult) stages.
Fig. 21 in Sieve-type normal pore canals in Jurassic ostracods: A review with description of a new genus
Fig. 21. Stratigraphic distribution of Minyocythere angulata sp. nov., Minyocythere sp. cf. M. macroporosa sp. nov., Minyocythere macroporosa sp. nov., Minyocythere maculosa (Bate, 1963), and Minyocythere tuberculata (Luppold, 2012) in Borehole Hambühren WA2, NW Germany.
Fig. 6 in Sieve-type normal pore canals in Jurassic ostracods: A review with description of a new genus
Fig. 6. Distribution of sieve-type normal pore canals (StPC) and simple normal pore canals (NPC) on the outer side of left valves of cytherid ostracod Minyocythere gen. et spp. nov. A. Minyocythere macroporosa sp. nov. from Borehole Hambühren WA2, 166 m, NW Germany, Witchellia laeviuscula Zone (Braun Jura γ), Lower Bajocian. Holotype, SMF Xe 23721, male left valve (A), detail (A), total area of A, c. 45 μm2. B. Minyocythere angulata 1 2 2 sp. nov. from Borehole Hambühren WA2, 203 m, NW Germany, Upper Aalenian (Braun Jura β). Holotype, SMF Xe 23737, male left valve (B1), detail (B), total area of B, c. 44 μm2. C. Minyocythere sp. cf. M. macroporosa sp. nov. from Borehole Rodewald WA12, 404.5 m, NW Germany, Witchellia 2 2 laeviuscula Zone (Braun Jura γ upper), Lower Bajocian. SMF Xe 23725, male left valve (C1), detail (C2). D. Minyocythere maculosa (Bate, 1963) from Hambühren WA2, 171–174 m, NW Germany, Upper Aalenian (Braun Jura β). SMF Xe 23750, male left valve. E. Minyocythere tuberculata (Luppold, 2012) from Borehole Rodewald WA12, 404.5 m, NW Germany, Witchellia laeviuscula Zone (Braun Jura γ upper), Lower Bajocian. SMF Xe 23754, female left valve. Black dots refer to macro StPC (StPC-M); white arrows point to micro StPC (StPC-m); simple NPC underlined; black arrows indicate position of the two StPC-M characteristic of Minyocythere species. Scale bars 100 μm.
Fig. 9 in Sieve-type normal pore canals in Jurassic ostracods: A review with description of a new genus
Fig. 9. Marginal pore canals of cytherid ostracods Minyocythere macroporosa sp. nov. and Minyocythere angulata sp. nov. A, B. Minyocythere angulata sp. nov. from Borehole Hambühren WA2, 203 m, NW Germany, Upper Aalenian (Braun Jura β). A. SMF Xe 23742 (specimen broken), female right valve in internal view. B. Unnumbered (specimen missing), male right valve in internal view. C, D. Minyocythere macroporosa sp. nov. from Hambühren WA2, 166 m, NW Germany, Upper Aalenian (Braun Jura β). C. Holotype, SMF Xe 23721, male left valve in external view. D. Paratype, SMF Xe 23722, female right valve in external view. Light micrographs by Erich Triebel. Scale bars 100 μm.
Fig. 20 in Sieve-type normal pore canals in Jurassic ostracods: A review with description of a new genus
Fig. 20. Cytherid ostracod Dolocythere amphistiela sp. nov. from Borehole Rodewald WA4, 187 m, NW Germany Leymeriella tardefurcata Zone, Lower Albian. A. Paratype, SMF Xe 23760, male right valve in external view. B. Holotype, SMF Xe 23761, male left valve in external view (B1), dorsal-posterior area (B2), ornamentation (B3). C. Paratype, SMF Xe 23762, female left valve in external view. D. Paratype, SMF Xe 23763, female right valve in external view (D1), small StPC (cf. micro sieve-type normal pore canals StPC-m) (D2, D3), simple pore (D4). E. Paratype, SMF Xe 23764, female right valve in internal view. F. Paratype, SMF Xe 23765, male left valve in internal view (F1), small StPC (cf. StPC-m) (F2), muscle scars (F3). G. Paratype, SMF Xe 23766, male left valve in internal view (G1), hinge (G2).
Fig. 1 in Sieve-type normal pore canals in Jurassic ostracods: A review with description of a new genus
Fig. 1. Schematic cross-sections of ostracod valves, exterior to top, interior to bottom. A. NPC classification of Puri and Dickau (1969). B. StPC with sieve plate flush with external surface (1) and sieve plate in funnel-shaped depression (2).
Fig. 15 in Sieve-type normal pore canals in Jurassic ostracods: A review with description of a new genus
Fig. 15. Length versus height plots for Minyocythere maculosa (Bate, 1963) from UK (A) and Germany (B).
Fig. 4 in Sieve-type normal pore canals in Jurassic ostracods: A review with description of a new genus
Fig. 4. Comparison of muscle scars of Dolocythere Mertens, 1956 and Minyocythere gen. nov. A. Dolocythere rara Mertens, 1956 from Borehole Lingen 196, 697–704 m, NW Germany, Lower Albian. Paratype, BGR T.-K. 1300 (Mertens Collection, Hannover), female left valve in internal view. B. Minyocythere angulata sp. nov. from Borehole Hambühren WA2, 203 m, NW Germany, Upper Aalenian (Braun Jura β). Paratype, SMF Xe 23738, female left valve in internal view. A1, B1, photographs; A2, B2, explanatory drawings.
Fig. 7 in Sieve-type normal pore canals in Jurassic ostracods: A review with description of a new genus
Fig. 7. Cytherid ostracod Minyocythere macroporosa sp. nov. from Borehole Hambühren WA2, 166–167 m (A–C), 166 m (D, E), 168–169 m (F), NW Germany, Witchellia laeviuscula Zone (Braun Jura γ), Lower Bajocian. A. Paratype, SMF Xe 23718, female carapace in right view. B. Paratype, SMF Xe 23719, male carapace in right (B1) and dorsal (B2) views, antero-dorsal margin (B3). C. Paratype, SMF Xe 23720, female carapace in dorsal (C1) and ventral (C6) views, pores (large and small) (C2), macro sieve-type normal pore canals (StPC-M) (C3), antero-dorsal margin (C4), and micro sieve-type →
Fig. 12 in Sieve-type normal pore canals in Jurassic ostracods: A review with description of a new genus
Fig. 12. Cytherid ostracod Minyocythere angulata sp. nov. from Borehole Hambühren WA2, 177–180 m (A, H), 203–206 m (B–E), 203 m (F, G), NW Germany, Upper Aalenian (Braun Jura β). A. Paratype, SMF Xe 23732, female carapace in right view. B. Paratype, SMF Xe 23733, female right valve in external view (B1), micro sieve-type pore canals (StPC-m) (B2), and round macro sieve-type normal pore canals (StPC-M) (B3). C. Paratype, SMF Xe 23734, female left valve in external view (C1), elongate StPC-M (C2). D. Paratype, SMF Xe 23735, female carapace in dorsal view. E. Paratype, SMF Xe 23736, female carapace in ventral view. F. Holotype, SMF Xe 23737, male left valve in external (F1) and internal (F4) views, ornamentation and StPC-M and StPC-m (F2), StPC-m (F3), hinge (F5). G. Paratype, SMF Xe 23738, female left valve in internal view (G1), muscle scars (G2), StPC-m (G3). H. Paratype, SMF Xe 23740, male carapace in right view. I. Paratype, SMF Xe 23739, A-2? juvenile right valve in external view.
Fig. 18. Cytherid ostracod Dolocythere rara Mertens, 1956 from Borehole Lingen 196, 697–704 m in Sieve-type normal pore canals in Jurassic ostracods: A review with description of a new genus
Fig. 18. Cytherid ostracod Dolocythere rara Mertens, 1956 from Borehole Lingen 196, 697–704 m (A, B), Borehole Rodewald WA6, 206 m (C), WA7, 383.7 m (E), Borehole ZW Losser 1, 256.4–258.4 m (F) from NW Germany, Lower Albian and Ziegelei Bekum (D) from NW Germany, Upper Aptian. A. Paratype, BGR T.-K. 1300 (Mertens Collection, Hannover), female left valve in external (A1) and internal (A5) views, ornamentation (A2–A4), muscle scars (A6), hinge (A7), small sieve-type pore canals (StPC) (cf. micro sieve-type normal pore canals StPC-m) (A8). B. Paratype, BGR T.-K. 1300 (Mertens →
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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.
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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.
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